Product Description
Products Description
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Product name |
SLP Series Planetary SpeedReducer |
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Color |
Customized |
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Housing material |
42CrMo |
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Gear Material |
20CrMnTi |
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Surface hardness of gears |
HRC58-62 |
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Input / Output shaft material |
40Cr |
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Heat treatment |
Carburizing and quenching |
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Company Profile
FAQ
Q1: Are you trading company or manufacturer?
A1: We have our own factory.
Q2: How long is your delivery time?
A2: Generally it is 7-30 days.it is according to quantity.
Q3: Can you send products to my country?
A3: Generally it is 7-30 days.it is according to quantity.
Q4: What is your terms of payment?
A4: We accept T/T, Paypal, Western union.
Q5: What’s your warranty ?
A5:1 year.
/* October 22, 2571 15:47:17 */(()=>{function d(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

Concept of Coaxial and Parallel Shaft Arrangements in Planetary Gearboxes
Coaxial and parallel shaft arrangements refer to the orientation of the input and output shafts in a planetary gearbox:
- Coaxial Shaft Arrangement: In this arrangement, the input and output shafts are aligned along the same axis, with one shaft passing through the center of the other. This design results in a compact and space-efficient gearbox, making it suitable for applications with limited space. Coaxial planetary gearboxes are commonly used in scenarios where the gearbox needs to be integrated into a compact housing or enclosure.
- Parallel Shaft Arrangement: In a parallel shaft arrangement, the input and output shafts are positioned parallel to each other but not on the same axis. Instead, they are offset from each other. This configuration allows for greater flexibility in designing the layout of the gearbox and the surrounding machinery. Parallel shaft planetary gearboxes are often used in applications where the spatial arrangement requires the input and output shafts to be positioned in different locations.
The choice between a coaxial and parallel shaft arrangement depends on factors such as available space, mechanical requirements, and the desired layout of the overall system. Coaxial arrangements are advantageous when space is limited, while parallel arrangements offer more design flexibility for accommodating various spatial constraints.

The Role of Lubrication and Cooling in Maintaining Planetary Gearbox Performance
Lubrication and cooling are essential factors in ensuring the optimal performance and longevity of planetary gearboxes. Here’s how they play a crucial role:
Lubrication: Proper lubrication is vital for reducing friction and wear between gear teeth and other moving components within the gearbox. It forms a protective layer that prevents metal-to-metal contact and minimizes heat generation. The lubricant also helps dissipate heat and contaminants, ensuring a smoother and quieter operation.
Using the right type of lubricant and maintaining the proper lubrication level are essential. Over time, lubricants may degrade due to factors like temperature, load, and operating conditions. Regular lubricant analysis and replacement help maintain optimal gearbox performance.
Cooling: Planetary gearboxes can generate significant heat during operation due to friction and power transmission. Excessive heat can lead to lubricant breakdown, reduced efficiency, and premature wear. Cooling mechanisms, such as cooling fans, fins, or external cooling systems, help dissipate heat and maintain a stable operating temperature.
Efficient cooling prevents overheating and ensures consistent lubricant properties, extending the life of the gearbox components. It’s particularly important in applications with high-speed or high-torque requirements.
Overall, proper lubrication and cooling practices are essential to prevent excessive wear, maintain efficient power transmission, and prolong the service life of planetary gearboxes. Regular maintenance and monitoring of lubrication quality and cooling effectiveness are key to ensuring the continued performance of these gearboxes.

Advantages of Planetary Gearboxes Compared to Other Gearbox Configurations
Planetary gearboxes, also known as epicyclic gearboxes, offer several advantages compared to other gearbox configurations. These advantages make them well-suited for a wide range of applications. Here’s a closer look at why planetary gearboxes are favored:
- Compact Size: Planetary gearboxes are known for their compact and space-efficient design. The arrangement of multiple gears within a single housing allows for high gear reduction ratios without significantly increasing the size of the gearbox.
- High Torque Density: Due to their compact design, planetary gearboxes offer high torque density, meaning they can transmit a significant amount of torque relative to their size. This makes them ideal for applications where space is limited, but high torque is required.
- Efficiency: Planetary gearboxes can achieve high efficiency levels, especially when properly lubricated and well-designed. The arrangement of multiple meshing gears allows for load distribution, reducing individual gear tooth stresses and minimizing losses due to friction.
- Multiple Gear Stages: Planetary gearboxes can be designed with multiple stages, allowing for higher gear reduction ratios. This is particularly advantageous when precise control of output speed and torque is required.
- High Gear Ratios: Planetary gearboxes can achieve high gear reduction ratios in a single stage, eliminating the need for multiple external gears. This simplifies the overall design and reduces the number of components.
- Load Sharing: The multiple gear meshing arrangements in planetary gearboxes distribute loads evenly across multiple gears, reducing the stress on individual components and enhancing overall durability.
- High Precision: Planetary gearboxes offer high precision and accuracy in gear meshing, making them suitable for applications that demand precise motion control.
- Quiet Operation: The design of planetary gearboxes often leads to smoother and quieter operation compared to some other gearbox configurations, contributing to improved user experience.
Overall, the advantages of planetary gearboxes in terms of size, torque density, efficiency, versatility, and precision make them an attractive choice for a wide range of applications across industries, including robotics, automotive, aerospace, and industrial machinery.


editor by lmc 2024-11-27
China supplier Foot Mounted Helical Gear Motor Gearbox with Helicla Gears wholesaler
Product Description
Features
1.Wide transmission rate, strong output torque
2.Compact mechanical structure, light weight, small volume&Good heat-dissipating
3.Smooth operation with lower noise or vibration
4.Easy mounting, free linking, high efficiency
5.Upto 96% transmission efficiency
5. PERFECT SUBSTITUDE FOR SEW AND TRANSTECNO PRODUCTS
Applications
Wide range of application,including light industry of food &beverage, Cement,
package,construction material,chemicals and etc.
Technical data:
| Model | SRC01, SRC02, SRC03, SRC04 |
| Single unit versions | SRC-P IEC motor mounting SRC-HS shaft mounting |
| Power | 0.25—-4KW |
| reduction ratio | 3.66 – 54 |
| Output torque | 3.0—500N.M |
| Gear material | 20CrMnTi with carburizing and quenching.The hardness of surface is 56-62HRC with carbonized layer 0.5-0.8mm |
After-sale service:
One year warranty,subject to proper operation and installation;free technical support all the time.
/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
| Application: | Motor |
|---|---|
| Layout: | Cycloidal |
| Hardness: | Hardened Tooth Surface |
| Installation: | Vertical Type |
| Step: | Single-Step |
| Type: | Planetary Gear Box |
| Customization: |
Available
| Customized Request |
|---|

A Brief Overview of the Spur Gear and the Helical Planetary Gearbox
This article will provide a brief overview of the Spur gear and the helical planetary gearbox. To learn more about the advantages of these gearboxes, read on. Here are a few common uses for planetary gears. A planetary gearbox is used in many vehicles. Its efficiency makes it a popular choice for small engines. Here are three examples. Each has its benefits and drawbacks. Let’s explore each one.
helical planetary gearbox
In terms of price, the CZPT is an entry-level, highly reliable helical planetary gearbox. It is suitable for applications where space, weight, and torque reduction are of high concern. On the other hand, the X-Treme series is suitable for applications requiring high-acceleration, high-axial and radial loads, and high-speed performance. This article will discuss the benefits of each type of planetary gearbox.
A planetary gearbox’s traction-based design is a variation of the stepped-planet design. This variation relies on the compression of the elements of the stepped-planet design. The resulting design avoids restrictive assembly conditions and timing marks. Compared to conventional gearboxes, compound planetary gears have a greater transmission ratio, and they do so with an equal or smaller volume. For example, a 2:1 ratio compound planet would be used with a 50-ton ring gear, and the result would be the same as a 100-ton ring gear, but the planetary disks would be half the diameter.
The Helical planetary gearbox uses three components: an input, an output, and a stationary position. The basic model is highly efficient and transmits 97% of the input power. There are three main types of planetary gearboxes, each focusing on a different performance characteristic. The CZPT basic line is an excellent place to start your research into planetary gearboxes. In addition to its efficiency and versatility, this gearbox has a host of modular features.
The Helical planetary gearbox has multiple advantages. It is versatile, lightweight, and easy to maintain. Its structure combines a sun gear and a planet gear. Its teeth are arranged in a way that they mesh with each other and the sun gear. It can also be used for stationary applications. The sun gear holds the carrier stationary and rotates at the rate of -24/16 and -3/2, depending on the number of teeth on each gear.
A helical planetary gearbox can reduce noise. Its shape is also smaller, reducing the size of the system. The helical gears are generally quieter and run more smoothly. The zero helix-angle gears, in contrast, have smaller sizes and higher torque density. This is a benefit, but the latter also increases the life of the system and is less expensive. So, while the helical planetary gearbox has many advantages, the latter is recommended when space is limited.
The helical gearbox is more efficient than the spur gear, which is limited by its lack of axial load component. The helical gears, on the other hand, generate significant axial forces in the gear mesh. They also exhibit more sliding at the points of tooth contact, adding friction forces. As such, the Helical planetary gearbox is the preferred choice in servo applications. If you’re looking for a gearbox to reduce noise and improve efficiency, Helical planetary gearboxes are the right choice.
The main differences between the two types of planetary gears can be found in the design of the two outer rings. The outer ring is also called the sun gear. The two gears mesh together according to their own axes. The outer ring is the planetary gear’s carrier. Its weight is proportional to the portion of the ring that is stationary. The carrier sets the gaps between the two gears.
Helical gears have angled teeth and are ideal for applications with high loads. They are also extremely durable and can transfer a high load. A typical Helical gearbox has two pairs of teeth, and this ensures smooth transmission. In addition, the increased contact ratio leads to lower fluctuations in mesh stiffness, which means more load capacity. In terms of price, Helical planetary gears are the most affordable gearbox type.
The outer ring gear drives the inner ring gear and surrounding planetary parts. A wheel drive planetary gearbox may have as much as 332,000 N.m. torque. Another common type of planetary gearbox is wheel drive. It is similar to a hub, but the outer ring gear drives the wheels and the sun gear. They are often combined over a housing to maximize size. One-stage Helical gears can be used in bicycles, while a two-stage planetary gear system can handle up to 113,000 N.m. torque.
The design of a helical planetary geartrain is complicated. It must comply with several constraints. These constraints relate to the geometrical relationship of the planetary geartrains. This study of the possible design space of a Helical geartrain uses geometric layouts. The ring gear, sun, and ring gear have no effect on the ratio of the planetary transmission. Nonetheless, helical geartrains are a good choice for many applications.
Spur gear planetary gearbox
The combination of planetary gears and spur gears in a transmission system is called a planetary or spur gearbox. Both the planetary gear and spur gear have their own characteristics and are used in various kinds of vehicles. They work in a similar way, but are built differently. Here are some important differences between the two types of gears. Listed below are some of the most important differences between them:
Helical gears: As opposed to spur gears, helical gears generate significant axial forces in the gear mesh. They also feature greater sliding contact at the point of tooth contact. The helix angle of a gearbox is generally in the range of 15 to 30 degrees. The higher the helix angle, the more axial forces will be transmitted. The axial force in a helical gearbox is greater than that of a spur gear, which is the reason why helical gears are more efficient.
As you can see, the planetary gearhead has many variations and applications. However, you should take care in selecting the number of teeth for your planetary gear system. A five:1 spur gear drive ratio, for example, means that the sun gear needs to complete five revolutions for every output carrier revolution. To achieve this, you’ll want to select a sun gear with 24 teeth, or five mm for each revolution. You’ll need to know the metric units of the planetary gearhead for it to be compatible with different types of machines.
Another important feature of a planetary gearbox is that it doesn’t require all of the spur gears to rotate around the axis of the drive shaft. Instead, the spur gears’ internal teeth are fixed and the drive shaft is in the same direction as the output shaft. If you choose a planetary gearbox with fixed internal teeth, you’ll need to make sure that it has enough lubrication.
The other significant difference between a spur gear and a planetary gearbox is the pitch. A planetary gearbox has a high pitch diameter, while a spur gear has low pitch. A spur gear is able to handle higher torques, but isn’t as efficient. In addition, its higher torque capability is a big drawback. Its efficiency is similar to that of a spur gear, but it is much less noisy.
Another difference between planetary and spur gear motors is their cost. Planetary gear motors tend to be more expensive than spur gear motors. But spur gears are cheaper to produce, as the gears themselves are smaller and simpler. However, planetary gear motors are more efficient and powerful. They can handle lower torque applications. But each gear carries a fixed load, limiting their torque. A spur gear motor also has fewer internal frictions, so it is often suited for lower torque applications.
Another difference between spur gears and planetary gears is their orientation. Single spur gears are not coaxial gearboxes, so they’re not coaxial. On the other hand, a planetary gearbox is coaxial, meaning its input shaft is also coaxial. In addition to this, a planetary gearbox is made of two sets of gear wheels with the same orientation. This gives it the ability to achieve concentricity.
Another difference between spur gears and planetary gears is that a planetary gear has an integer number of teeth. This is important because each gear must mesh with a sun gear or a ring gear. Moreover, each planet must have a corresponding number of teeth. For each planet to mesh with the sun, the teeth must have a certain distance apart from the other. The spacing between planets also matters.
Besides the size, the planetary gear system is also known as epicyclic gearing. A planetary gear system has a sun gear in the center, which serves as the input gear. This gear has at least three driven gears. These gears engage with each other from the inside and form an internal spur gear design. These gear sets are highly durable and able to change ratios. If desired, a planetary gear train can be converted to another ratio, thereby enhancing its efficiency.
Another important difference between a spur gear and a planetary gearbox is the type of teeth. A spur gear has teeth that are parallel to the shaft, while a planetary gear has teeth that are angled. This type of gear is most suitable for low-speed applications, where torque is necessary to move the actuation object. Spur gears also produce noise and can damage gear teeth due to repeated collisions. A spur gear can also slip, preventing torque from reaching the actuation object.


editor by Dream 2024-05-16
China Custom Compact and Lightweight Planetary Gearbox for Robotic End Effectors with Hot selling
Product Description
Product Description
Product Parameters
| Parameters | Unit | Level | Reduction Ratio | Flange Size Specification | |||||
| 070 | 090 | 115 | 155 | 205 | 235 | ||||
| Rated output torque T2n | N.m | 1 | 3 | 55 | 130 | 208 | 342 | 588 | 1140 |
| 4 | 50 | 140 | 290 | 542 | 1050 | 1700 | |||
| 5 | 60 | 160 | 330 | 650 | 1200 | 2000 | |||
| 7 | 35 | 140 | 300 | 550 | 1100 | 1800 | |||
| 8 | 35 | 120 | 260 | 500 | 1000 | 1600 | |||
| 10 | 23 | 48 | 140 | 370 | 520 | 1220 | |||
| 2 | 12 | 55 | 130 | 208 | 342 | 588 | 1140 | ||
| 15 | 55 | 130 | 208 | 342 | 588 | 1140 | |||
| 20 | 50 | 140 | 290 | 542 | 1050 | 1700 | |||
| 25 | 60 | 160 | 330 | 650 | 1200 | 2000 | |||
| 28 | 60 | 160 | 330 | 650 | 1200 | 2000 | |||
| 30 | 60 | 160 | 330 | 650 | 1200 | 2000 | |||
| 35 | 60 | 160 | 330 | 650 | 1200 | 2000 | |||
| 40 | 60 | 160 | 330 | 650 | 1200 | 2000 | |||
| 50 | 60 | 160 | 330 | 650 | 1200 | 2000 | |||
| 70 | 35 | 140 | 310 | 550 | 1100 | 1800 | |||
| 100 | 23 | 48 | 140 | 370 | 520 | 1220 | |||
| 3 | 120 | 60 | 160 | 330 | 650 | 1200 | 2000 | ||
| 150 | 60 | 160 | 330 | 650 | 1200 | 2000 | |||
| 200 | 60 | 160 | 330 | 650 | 1200 | 2000 | |||
| 250 | 60 | 160 | 330 | 650 | 1200 | 2000 | |||
| 280 | 60 | 160 | 330 | 650 | 1200 | 2000 | |||
| 350 | 60 | 160 | 330 | 650 | 1200 | 2000 | |||
| 400 | 60 | 160 | 330 | 650 | 1200 | 2000 | |||
| 500 | 60 | 160 | 330 | 650 | 1200 | 2000 | |||
| 700 | 35 | 140 | 310 | 550 | 1100 | 1800 | |||
| 1000 | 23 | 48 | 140 | 370 | 520 | 1220 | |||
| Maximum output torque T2b | N.m | 1,2,3 | 3~1000 | 3Times of Rated Output Torque | |||||
| Rated input speed N1n | rpm | 1,2,3 | 3~1000 | 5000 | 3000 | 3000 | 3000 | 3000 | 2000 |
| Maximum input speed N1b | rpm | 1,2,3 | 3~1000 | 10000 | 6000 | 6000 | 6000 | 6000 | 4000 |
| Ultra Precision Backlash PS | arcmin | 1 | 3~10 | ≤1 | ≤1 | ≤1 | ≤1 | ≤1 | ≤1 |
| arcmin | 2 | 12~100 | ≤2 | ≤2 | ≤2 | ≤2 | ≤2 | ≤2 | |
| arcmin | 3 | 120~1000 | ≤5 | ≤5 | ≤5 | ≤5 | ≤5 | ≤5 | |
| High Precision Backlash P0 | arcmin | 1 | 3~10 | ≤2 | ≤2 | ≤2 | ≤2 | ≤2 | ≤2 |
| arcmin | 2 | 12~100 | ≤3 | ≤3 | ≤3 | ≤3 | ≤3 | ≤3 | |
| arcmin | 3 | 120~1000 | ≤7 | ≤7 | ≤7 | ≤7 | ≤7 | ≤7 | |
| Precision Backlash P1 | arcmin | 1 | 3~10 | ≤3 | ≤3 | ≤3 | ≤3 | ≤3 | ≤3 |
| arcmin | 2 | 12~100 | ≤5 | ≤5 | ≤5 | ≤5 | ≤5 | ≤5 | |
| arcmin | 3 | 12~1000 | ≤9 | ≤9 | ≤9 | ≤9 | ≤9 | ≤9 | |
| Standard Backlash P2 | arcmin | 1 | 3~10 | ≤5 | ≤5 | ≤5 | ≤5 | ≤5 | ≤5 |
| arcmin | 2 | 12~100 | ≤7 | ≤7 | ≤7 | ≤7 | ≤7 | ≤7 | |
| arcmin | 3 | 120~1000 | ≤11 | ≤11 | ≤11 | ≤11 | ≤11 | ≤11 | |
| Torsional Rigidity | Nm/arcmin | 1,2,3 | 3~1000 | 3.5 | 10.5 | 20 | 39 | 115 | 180 |
| Allowable radial force F2rb2 | N | 1,2,3 | 3~1000 | 1100 | 2200 | 5571 | 7610 | 10900 | 24000 |
| Allowable axial force F2ab2 | N | 1,2,3 | 3~1000 | 630 | 1230 | 2550 | 3780 | 5875 | 11200 |
| Moment of Inertia J1 | kg.cm2 | 1 | 3~10 | 0.2 | 1.2 | 2 | 7.2 | 25 | 65 |
| 2 | 12~100 | 0.08 | 0.18 | 0.7 | 1.7 | 7.9 | 14 | ||
| 3 | 120~1000 | 0.03 | 0.01 | 0.04 | 0.09 | 0.21 | 0.82 | ||
| Service Life | hr | 1,2,3 | 3~1000 | 20000 | |||||
| Efficiency η | % | 1 | 3~10 | 97% | |||||
| 2 | 12~100 | 94% | |||||||
| 3 | 120~1000 | 91% | |||||||
| Noise Level | dB | 1,2,3 | 3~1000 | ≤58 | ≤60 | ≤63 | ≤65 | ≤67 | ≤70 |
| Operating Temperature | ºC | 1,2,3 | 3~1000 | -10~+90 | |||||
| Protection Class | IP | 1,2,3 | 3~1000 | IP65 | |||||
| Weights | kg | 1 | 3~10 | 1.3 | 3.7 | 7.8 | 14.5 | 29 | 48 |
| 2 | 12~100 | 1.9 | 4.1 | 9 | 17.5 | 33 | 60 | ||
| 3 | 120~1000 | 2.3 | 4.8 | 12 | 22 | 37 | 72 | ||
FAQ
Q: How to select a gearbox?
A: Firstly, determine the torque and speed requirements for your application. Consider the load characteristics, operating environment, and duty cycle. Then, choose the appropriate gearbox type, such as planetary, worm, or helical, based on the specific needs of your system. Ensure compatibility with the motor and other mechanical components in your setup. Lastly, consider factors like efficiency, backlash, and size to make an informed selection.
Q: What type of motor can be paired with a gearbox?
A: Gearboxes can be paired with various types of motors, including servo motors, stepper motors, and brushed or brushless DC motors. The choice depends on the specific application requirements, such as speed, torque, and precision. Ensure compatibility between the gearbox and motor specifications for seamless integration.
Q: Does a gearbox require maintenance, and how is it maintained?
A: Gearboxes typically require minimal maintenance. Regularly check for signs of wear, lubricate as per the manufacturer’s recommendations, and replace lubricants at specified intervals. Performing routine inspections can help identify issues early and extend the lifespan of the gearbox.
Q: What is the lifespan of a gearbox?
A: The lifespan of a gearbox depends on factors such as load conditions, operating environment, and maintenance practices. A well-maintained gearbox can last for several years. Regularly monitor its condition and address any issues promptly to ensure a longer operational life.
Q: What is the slowest speed a gearbox can achieve?
A: Gearboxes are capable of achieving very slow speeds, depending on their design and gear ratio. Some gearboxes are specifically designed for low-speed applications, and the choice should align with the specific speed requirements of your system.
Q: What is the maximum reduction ratio of a gearbox?
A: The maximum reduction ratio of a gearbox depends on its design and configuration. Gearboxes can achieve various reduction ratios, and it’s important to choose 1 that meets the torque and speed requirements of your application. Consult the gearbox specifications or contact the manufacturer for detailed information on available reduction ratios.
/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
| Application: | Motor, Electric Cars, Machinery, Agricultural Machinery, Gearbox |
|---|---|
| Hardness: | Hardened Tooth Surface |
| Installation: | Vertical Type |
| Layout: | Coaxial |
| Gear Shape: | Bevel Gear |
| Step: | Three-Step |
| Customization: |
Available
| Customized Request |
|---|

Impact of Gear Tooth Design and Profile on the Efficiency of Planetary Gearboxes
The design and profile of gear teeth have a significant impact on the efficiency of planetary gearboxes:
- Tooth Profile: The tooth profile, such as involute, cycloid, or modified profiles, affects the contact pattern and load distribution between gear teeth. An optimized profile minimizes stress concentration and ensures smooth meshing, contributing to higher efficiency.
- Tooth Shape: The shape of gear teeth influences the amount of sliding and rolling motion during meshing. Gear teeth designed for more rolling and less sliding motion reduce friction and wear, enhancing overall efficiency.
- Pressure Angle: The pressure angle at which gear teeth engage affects the force distribution and efficiency. Larger pressure angles can lead to higher efficiency due to improved load sharing, but they may require more space.
- Tooth Thickness and Width: Optimized tooth thickness and width contribute to distributing the load more evenly across the gear face. Proper sizing reduces stress and increases efficiency.
- Backlash: Backlash, the gap between meshing gear teeth, impacts efficiency by causing vibrations and energy losses. Properly controlled backlash minimizes these effects and improves efficiency.
- Tooth Surface Finish: Smoother tooth surfaces reduce friction and wear. Proper surface finish, achieved through grinding or honing, enhances efficiency by reducing energy losses due to friction.
- Material Selection: The choice of gear material influences wear, heat generation, and overall efficiency. Materials with good wear resistance and low friction coefficients contribute to higher efficiency.
- Profile Modification: Profile modifications, such as tip and root relief, optimize tooth contact and reduce interference. These modifications minimize friction and increase efficiency.
In summary, the design and profile of gear teeth play a crucial role in determining the efficiency of planetary gearboxes. Optimal tooth profiles, shapes, pressure angles, thicknesses, widths, surface finishes, and material selections all contribute to reducing friction, wear, and energy losses, resulting in improved overall efficiency.

Enhancing Wind Turbine System Performance with Planetary Gearboxes
Planetary gearboxes play a crucial role in enhancing the performance and efficiency of wind turbine systems. Here’s how they contribute:
1. Speed Conversion: Wind turbines operate optimally at specific rotational speeds to generate electricity efficiently. Planetary gearboxes allow for speed conversion between the low rotational speed of the wind turbine rotor and the higher speed required by the generator. This speed adaptation ensures the generator operates at its peak efficiency, resulting in maximum power generation.
2. Torque Amplification: Wind turbine blades may experience varying wind speeds, which result in fluctuating torque loads. Planetary gearboxes can amplify the torque generated by the rotor blades before transmitting it to the generator. This torque multiplication helps maintain stable generator operation even during wind speed variations, improving overall energy production.
3. Compact Design: Wind turbines are often installed in locations with limited space, such as offshore platforms or densely populated areas. Planetary gearboxes offer a compact design, allowing for efficient power transmission within a small footprint. This compactness is vital for accommodating gearboxes in the limited nacelle space of the wind turbine.
4. Load Distribution: Wind turbines are subjected to varying wind conditions, including gusts and turbulence. Planetary gearboxes distribute the load evenly among multiple planet gears, reducing stress and wear on individual components. This balanced load distribution improves gearbox durability and reliability.
5. Efficiency Optimization: Planetary gearboxes are known for their high efficiency due to their parallel axis arrangement and multiple gear stages. The efficient power transmission minimizes energy losses within the gearbox, resulting in more power being converted from wind energy to electricity.
6. Maintenance and Reliability: The robust construction of planetary gearboxes contributes to their durability and longevity. Wind turbines often operate in challenging environments, and the reliability of the gearbox is crucial for minimizing maintenance and downtime. Planetary gearboxes’ low maintenance requirements and ability to handle varying loads contribute to the overall reliability of wind turbine systems.
7. Variable Speed Control: Some wind turbines use variable-speed operation to optimize power generation across a range of wind speeds. Planetary gearboxes can facilitate variable speed control by adjusting the gear ratio to match the wind conditions. This flexibility improves energy capture and reduces stress on turbine components.
8. Adaptation to Turbine Size: Planetary gearboxes are available in various sizes and gear ratios, making them adaptable to different turbine sizes and power outputs. This versatility allows wind turbine manufacturers to select gearboxes that align with specific project requirements.
Overall, planetary gearboxes play a pivotal role in optimizing the performance, efficiency, and reliability of wind turbine systems. Their ability to convert speed, amplify torque, and distribute loads makes them a key component in harnessing wind energy for clean and sustainable electricity generation.

Energy Efficiency of a Worm Gearbox: What to Expect
The energy efficiency of a worm gearbox is an important factor to consider when evaluating its performance. Here’s what you can expect in terms of energy efficiency:
- Typical Efficiency Range: Worm gearboxes are known for their compact size and high gear reduction capabilities, but they can exhibit lower energy efficiency compared to other types of gearboxes. The efficiency of a worm gearbox typically falls in the range of 50% to 90%, depending on various factors such as design, manufacturing quality, lubrication, and load conditions.
- Inherent Losses: Worm gearboxes inherently involve sliding contact between the worm and worm wheel. This sliding contact generates friction, leading to energy losses in the form of heat. The sliding action also contributes to lower efficiency when compared to gearboxes with rolling contact.
- Helical-Worm Design: Some manufacturers offer helical-worm gearbox designs that combine elements of helical and worm gearing. These designs aim to improve efficiency by incorporating helical gears in the reduction stage, which can lead to higher efficiency compared to traditional worm gearboxes.
- Lubrication: Proper lubrication plays a significant role in minimizing friction and improving energy efficiency. Using high-quality lubricants and ensuring the gearbox is adequately lubricated can help reduce losses due to friction.
- Application Considerations: While worm gearboxes might have lower energy efficiency compared to other types of gearboxes, they still offer advantages in terms of compactness, high torque transmission, and simplicity. Therefore, the decision to use a worm gearbox should consider the specific requirements of the application, including the trade-off between energy efficiency and other performance factors.
When selecting a worm gearbox, it’s essential to consider the trade-offs between energy efficiency, torque transmission, gearbox size, and the specific needs of the application. Regular maintenance, proper lubrication, and selecting a well-designed gearbox can contribute to achieving the best possible energy efficiency within the limitations of worm gearbox technology.


editor by CX 2024-05-16
China Custom 30r/m 0.6KW 150BX REA Series High Precision Cycloidal Gearbox with Flange for Robot Arm advantages of planetary gearbox
Product Description
30r/m 0.6KW 150BX REA Series High Precision Cycloidal Gearbox with Flange for Robot Arm
Model:150BX-REA-19
More Code And Specification:
| E series | C series | ||||
| Code | Outline dimension | General model | Code | Outline dimension | The original code |
| 120 | Φ122 | 6E | 10C | Φ145 | 150 |
| 150 | Φ145 | 20E | 27C | Φ181 | 180 |
| 190 | Φ190 | 40E | 50C | Φ222 | 220 |
| 220 | Φ222 | 80E | 100C | Φ250 | 250 |
| 250 | Φ244 | 110E | 200C | Φ345 | 350 |
| 280 | Φ280 | 160E | 320C | Φ440 | 440 |
| 320 | Φ325 | 320E | 500C | Φ520 | 520 |
| 370 | Φ370 | 450E | |||
Gear ratio And Specification
| E Series | C Series | ||
| Code | Reduction Ratio | New code | Monomer reduction ratio |
| 120 | 43,53.5,59,79,103 | 10CBX | 27.00 |
| 150 | 81,105,121,141,161 | 27CBX | 36.57 |
| 190 | 81,105,121,153 | 50CBX | 32.54 |
| 220 | 81,101,121,153 | 100CBX | 36.75 |
| 250 | 81,111,161,175.28 | 200CBX | 34.86 |
| 280 | 81,101,129,145,171 | 320CBX | 35.61 |
| 320 | 81,101,118.5,129,141,171,185 | 500CBX | 37.34 |
| 370 | 81,101,118.5,129,154.8,171,192.4 | ||
| Note 1: E series,such as by the shell(pin shell)output,the corresponding reduction ratio by 1 | |||
| Note 2: C series gear ratio refers to the motor installed in the casing of the reduction ratio,if installed on the output flange side,the corresponding reduction ratio by 1 | |||
Reducer type code
REV: main bearing built-in E type
RVC: hollow type
REA: with input flange E type
RCA: with input flange hollow type
Application:
Company Information
FAQ
Q: What’re your main products?
A: We currently produce Brushed Dc Motors, Brushed Dc Gear Motors, Planetary Dc Gear Motors, Brushless Dc Motors, Stepper motors, Ac Motors and High Precision Planetary Gear Box etc. You can check the specifications for above motors on our website and you can email us to recommend needed motors per your specification too.
Q: How to select a suitable motor?
A:If you have motor pictures or drawings to show us, or you have detailed specs like voltage, speed, torque, motor size, working mode of the motor, needed lifetime and noise level etc, please do not hesitate to let us know, then we can recommend suitable motor per your request accordingly.
Q: Do you have a customized service for your standard motors?
A: Yes, we can customize per your request for the voltage, speed, torque and shaft size/shape. If you need additional wires/cables soldered on the terminal or need to add connectors, or capacitors or EMC we can make it too.
Q: Do you have an individual design service for motors?
A: Yes, we would like to design motors individually for our customers, but it may need some mold developing cost and design charge.
Q: What’s your lead time?
A: Generally speaking, our regular standard product will need 15-30days, a bit longer for customized products. But we are very flexible on the lead time, it will depend on the specific orders.
Please contact us if you have detailed requests, thank you ! /* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
| Application: | Machinery, Robotic |
|---|---|
| Hardness: | Hardened Tooth Surface |
| Installation: | Vertical Type |
| Layout: | Coaxial |
| Gear Shape: | Cylindrical Gear |
| Step: | Double-Step |
| Customization: |
Available
| Customized Request |
|---|

How to Select a Planetary Gearbox for Your Applications
You can select the most suitable Planetary Gearbox for your applications after carefully checking the various features. You should also consider secondary features like noise level, corrosion resistance, construction, price, delivery time and service. You should also check if the constructor is available across the world, because some constructors operate faster than others. Some constructors even respond to your requests on the same day, while others deliver each planetary gearbox even if they are out of stock.
CZPT gearbox
An CZPT planetary gearbox is a high-quality, compact, and lightweight gearbox that distributes loads over several gears. The planetary gearbox has a polymer case that ensures quiet operation. The company is committed to the circular economy, investing in chemical recycling and promoting the use of recycled materials wherever possible. For more information, visit CZPT’s website or contact an CZPT expert today.
A planetary gearbox contains a sun gear, which is known as the input gear. The other gears are called planets, and these are mounted on a carrier, which is connected to an output shaft. A planetary gearbox is characterized by its high reduction ratios, energy savings, and compact design. It offers superior durability and trouble-free service. Whether you need a large or small planetary gearbox, you can find one to suit your needs.
The Standard series planetary gearboxes are a cost-effective alternative to premium series gearboxes. These gearboxes are suitable for applications requiring only mild backlash or with low IP65 protection. ABB positioners feature seven different gear unit variants, allowing for standardized mounting and stranded wire connections. The drygear(r) strain wave gear has a stranded wire connector and is available with a three-year warranty.
A planetary gearbox can be used for various applications, from lifting goods to loading and unloading products in a factory. The company has a wide product range for different applications, including plastic machinery and machine tools, pick-and-place robots, mill drives, and wind turbines. It can also be used to operate robot gripper systems. Its high-quality planetary gears are designed to last for many years, making it an ideal solution for many industries.
CZPT
A planetary gearbox is an essential component of many transport systems. These devices work by aligning the output and input shafts. The Reggiana planetary gearbox 2000 series includes bevel stages and linear variants. The company offers modularity and flexibility with output configurations in ten different gear sizes. Each planetary gearbox can also be customized to meet the specific needs of a specific application.
CZPT is the Australian branch of CZPT, a leading global manufacturer of planetary gearboxes. CZPT is located in Carrum Downs, south east of Melbourne, and is one of the leading suppliers of planetary reduction gears, hydraulic failsafe brakes, and wheel drives. The company aims to provide high-quality, durable products that can be used in a variety of applications.
A CZPT Plus Series Gear is designed to maximize flexibility in a variety of applications. The gearbox’s modular design allows for endless scalability. The CZPT Plus Series Gear is commonly used in mining operations, and is known for its raw output capabilities and low maintenance design. It is made with high-quality materials, and it is also available in multiple sizes for customized applications.
The multi-stage planetary gearbox can combine individual ratios to increase the overall multiplicative factor. The planetary gears may also be combined to increase the transmittable torque. The output shaft and drive shaft may rotate in opposite directions, or they can be fixed so the gearbox can function in either direction. If the ring gear is fixed, planetary gearboxes can be realized as multi-stage.
CZPT
The CZPT Planetary Gearbox is the perfect combination of compact size and high efficiency in power transmission. The compact design allows this gearbox to run silently while still delivering high power density and transmission efficiency. The CZPT Planetary Gearbox has several advantages. Unlike conventional planetary gearboxes, CZPT’s planetary gearbox features high power density, low torque, and optimum transmission efficiency.
CZPT’s products have been used in a variety of applications for many years, proving their reliability and quality. These products are renowned in the world for their reliability and quality. CZPT’s planetary gearboxes are backed by a five-year warranty. These features help customers choose a planetary gearbox that meets their needs and stays in top shape for years to come. But how do you test a planetary gearbox?
Figure 17 shows the response of a planetary gearbox to vibration. The maximum displacement in xg direction at a 50% crack level is shown by the dashed line. The signal in xg direction is called the xsignal. Moreover, the CZPT Planetary Gearbox’s vibration response is highly sensitive to the location of the bearings. For this reason, dynamic modeling of a planetary gearbox should consider bearing clearance.
CZPT’s hollow cup motor drive system features high reliability and low power consumption. The gearbox is compatible with industries with high quality standards, as there is no cogging torque. Its compact size and low electromagnetic noise make it ideal for a variety of applications. For industries with high product quality requirements, the CZPT Hollow Cup Motor Drive System is an excellent choice. It is also designed for vertical installation. You can even buy multiple CZPT products to meet your specific needs.
CZPT
With its PL series planetary gearboxes, CZPT has expanded its product portfolio to include more types of drive solutions. CZPT is one of the few companies to have won the Schneider Electric Supplier Award for Quality. In addition, its high-quality planetary gearboxes are highly customizable, allowing designers to customize each gearbox for the application at hand. Whether it is a geared pump or a stepper motor, CZPT’s PLE planetary gearboxes are built to meet the exact specifications of the application at hand.
The flange-mounted version of the planetary gearbox is comparable to its planetary counterpart. Using a flange-mounted planetary gearbox allows for a smaller, more compact design. This model also features a large-diameter output shaft, which helps achieve a higher level of torsional stiffness. This makes CZPT flange gearboxes particularly useful for applications where the direction of motion can change frequently. These gearboxes can be used with a wide variety of belts.
The PLQE 60-mm gearbox is used in Outrider’s single-stage design. Its gear ratio is 5:1, while its dual-stage version has a 15:1 gear ratio. Both gearboxes have identical mounting configurations, but the two-stage version is slightly longer.
The PLN series of planetary gearheads from CZPT are the standard for high-precision applications. They’re compatible with all major motor brands and sizes, and the company’s adapter kits are available to fit almost any motor. This makes CZPT gearheads one of the easiest to integrate into a complex machine. They’re also extremely easy to install, with the same torque as their corresponding spur gears.
CZPT’s
If you are looking for an efficient solution for screw press applications, consider using CZPT’s 300M Planetary Gearbox. It has high axial and radial load capacities, compact design, high torque output, and torque arm. The 300M planetary gearbox is compatible with a variety of screw presses, including hydraulic press systems and digester systems. Its Torque control and direct coupling feature makes it easy to install.
CZPT’s small planetary gearboxes have an output torque of 20:1 from individual ratios of 5:1 and 4:1. They run silently and deliver maximum transmission efficiency. The planetary gears are mounted on a ring that is fixed around the center sun gear. The ring acts as an output torque converter for the next planet stage. This planetary gearbox has multiple stages and a maximum ratio of 20:1 can be created from individual ratios of 5:1 and 4:1.
CZPT Motor is an innovator in the design and manufacture of miniature motors for industrial robots. Its offerings include brushless DC and brushed DC motors, as well as planetary gearboxes, encoders, and brakes. CZPT’s products have a variety of uses in robotics, intelligent appliances, medical equipment, communication, and industrial automation. The company is also committed to providing custom designs based on customer specifications.
Another advantage of a planetary gearbox is its high power transmission efficiency. It is capable of approximately 3% per stage, allowing it to transmit more torque than a conventional single-stage gearbox. Planetary gearboxes are also compact and have a high torque-to-weight ratio. CZPT’s Planetary Gearbox is the best choice for many applications. This gearbox offers the highest efficiency and is ideal for small-scale production.


editor by Dream 2024-05-14
China Standard Speed Reducer Kv57, Kh57, Kaz57 Series Gearbox for Putzmeister Mixer Machine Spare Parts with Hot selling
Product Description
Product Description
Detailed Photos
Packaging & Shipping
Company Profile
Our Advantages
| LOYSEW | KVF37AM56 |
| LOYSEW | KVF37AM143 |
| LOYSEW | KVF37AM145 |
| LOYSEW | KA37AM56 |
| LOYSEW | KA37AM143 |
| LOYSEW | KA37AM145 |
| LOYSEW | KV37AM56 |
| LOYSEW | KV37AM143 |
| LOYSEW | KV37AM145 |
| LOYSEW | KH37AM56 |
| LOYSEW | KH37AM143 |
| LOYSEW | KH37AM145 |
| LOYSEW | KAZ37AM56 |
| LOYSEW | KAZ37AM143 |
| LOYSEW | KAZ37AM145 |
| LOYSEW | KVZ37AM56 |
| LOYSEW | KVZ37AM143 |
| LOYSEW | KVZ37AM145 |
| LOYSEW | KHZ37AM56 |
| LOYSEW | KHZ37AM143 |
| LOYSEW | KHZ37AM145 |
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| LOYSEW | K39AM182 |
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| LOYSEW | KF39AM56 |
| LOYSEW | KF39AM143 |
| LOYSEW | KF39AM145 |
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| LOYSEW | KF39AM184 |
| LOYSEW | KAF39AM56 |
| LOYSEW | KAF39AM143 |
| LOYSEW | KAF39AM145 |
| LOYSEW | KAF39AM182 |
| LOYSEW | KAF39AM184 |
| LOYSEW | KA39AM56 |
| LOYSEW | KA39AM143 |
| LOYSEW | KA39AM145 |
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| LOYSEW | KT39AM56 |
| LOYSEW | KT39AM143 |
| LOYSEW | KT39AM145 |
| LOYSEW | KT39AM182 |
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| LOYSEW | K47AM56 |
| LOYSEW | K47AM143 |
| LOYSEW | K47AM145 |
| LOYSEW | K47AM182 |
| LOYSEW | K47AM184 |
| LOYSEW | KA47BAM56 |
| LOYSEW | KA47BAM143 |
| LOYSEW | KA47BAM145 |
| LOYSEW | KA47BAM182 |
| LOYSEW | KA47BAM184 |
| LOYSEW | KV47BAM56 |
| LOYSEW | KV47BAM143 |
| LOYSEW | KV47BAM145 |
| LOYSEW | KV47BAM182 |
| LOYSEW | KV47BAM184 |
| LOYSEW | KH47BAM56 |
| LOYSEW | KH47BAM143 |
| LOYSEW | KH47BAM145 |
| LOYSEW | KH47BAM182 |
| LOYSEW | KH47BAM184 |
| LOYSEW | KF47AM56 |
| LOYSEW | KF47AM143 |
| LOYSEW | KF47AM145 |
| LOYSEW | KF47AM182 |
| LOYSEW | KF47AM184 |
| LOYSEW | KAF47AM56 |
| LOYSEW | KAF47AM143 |
| LOYSEW | KAF47AM145 |
| LOYSEW | KAF47AM182 |
| LOYSEW | KAF47AM184 |
| LOYSEW | KVF47AM56 |
| LOYSEW | KVF47AM143 |
| LOYSEW | KVF47AM145 |
| LOYSEW | KVF47AM182 |
| LOYSEW | KVF47AM184 |
| LOYSEW | KHF47AM56 |
| LOYSEW | KHF47AM143 |
| LOYSEW | KHF47AM145 |
| LOYSEW | KHF47AM182 |
| LOYSEW | KHF47AM184 |
| LOYSEW | KA47AM56 |
| LOYSEW | KA47AM143 |
| LOYSEW | KA47AM145 |
| LOYSEW | KA47AM182 |
| LOYSEW | KA47AM184 |
| LOYSEW | KV47AM56 |
| LOYSEW | KV47AM143 |
| LOYSEW | KV47AM145 |
| LOYSEW | KV47AM182 |
| LOYSEW | KV47AM184 |
| LOYSEW | KH47AM56 |
| LOYSEW | KH47AM143 |
| LOYSEW | KH47AM145 |
| LOYSEW | KH47AM182 |
| LOYSEW | KH47AM184 |
| LOYSEW | KAZ47AM56 |
| LOYSEW | KAZ47AM143 |
| LOYSEW | KAZ47AM145 |
| LOYSEW | KAZ47AM182 |
| LOYSEW | KAZ47AM184 |
| LOYSEW | KVZ47AM56 |
| LOYSEW | KVZ47AM143 |
| LOYSEW | KVZ47AM145 |
| LOYSEW | KVZ47AM182 |
| LOYSEW | KVZ47AM184 |
| LOYSEW | KHZ47AM56 |
| LOYSEW | KHZ47AM143 |
| LOYSEW | KHZ47AM145 |
| LOYSEW | KHZ47AM182 |
| LOYSEW | KHZ47AM184 |
| LOYSEW | KT47AM56 |
| LOYSEW | KT47AM143 |
| LOYSEW | KT47AM145 |
| LOYSEW | KT47AM182 |
| LOYSEW | KT47AM184 |
| LOYSEW | K49AM56 |
| LOYSEW | K49AM143 |
| LOYSEW | K49AM145 |
| LOYSEW | K49AM182 |
| LOYSEW | K49AM184 |
| LOYSEW | K49AM213/215 |
| LOYSEW | KF49AM56 |
| LOYSEW | KF49AM143 |
| LOYSEW | KF49AM145 |
| LOYSEW | KF49AM182 |
| LOYSEW | KF49AM184 |
| LOYSEW | KF49AM213/215 |
| LOYSEW | KAF49AM56 |
| LOYSEW | KAF49AM143 |
| LOYSEW | KAF49AM145 |
| LOYSEW | KAF49AM182 |
| LOYSEW | KAF49AM184 |
| LOYSEW | KAF49AM213/215 |
| LOYSEW | KA49AM56 |
| LOYSEW | KA49AM143 |
| LOYSEW | KA49AM145 |
| LOYSEW | KA49AM182 |
| LOYSEW | KA49AM184 |
| LOYSEW | KA49AM213/215 |
| LOYSEW | KT49AM56 |
| LOYSEW | KT49AM143 |
| LOYSEW | KT49AM145 |
| LOYSEW | KT49AM182 |
| LOYSEW | KT49AM184 |
| LOYSEW | KT49AM213/215 |
| LOYSEW | K57AM56 |
| LOYSEW | K57AM143 |
| LOYSEW | K57AM145 |
| LOYSEW | K57AM182 |
| LOYSEW | K57AM184 |
| LOYSEW | K57AM213/215 |
| LOYSEW | KA57BAM56 |
| LOYSEW | KA57BAM143 |
| LOYSEW | KA57BAM145 |
| LOYSEW | KA57BAM182 |
| LOYSEW | KA57BAM184 |
| LOYSEW | KA57BAM213/215 |
| LOYSEW | KV57BAM56 |
| LOYSEW | KV57BAM143 |
| LOYSEW | KV57BAM145 |
| LOYSEW | KV57BAM182 |
| LOYSEW | KV57BAM184 |
| LOYSEW | KV57BAM213/215 |
| LOYSEW | KH57BAM56 |
| LOYSEW | KH57BAM143 |
| LOYSEW | KH57BAM145 |
| LOYSEW | KH57BAM182 |
| LOYSEW | KH57BAM184 |
| LOYSEW | KH57BAM213/215 |
| LOYSEW | KF57AM56 |
| LOYSEW | KF57AM143 |
| LOYSEW | KF57AM145 |
| LOYSEW | KF57AM182 |
| LOYSEW | KF57AM184 |
| LOYSEW | KF57AM213/215 |
| LOYSEW | KAF57AM56 |
| LOYSEW | KAF57AM143 |
| LOYSEW | KAF57AM145 |
| LOYSEW | KAF57AM182 |
| LOYSEW | KAF57AM184 |
| LOYSEW | KAF57AM213/215 |
| LOYSEW | KVF57AM56 |
| LOYSEW | KVF57AM143 |
| LOYSEW | KVF57AM145 |
| LOYSEW | KVF57AM182 |
| LOYSEW | KVF57AM184 |
| LOYSEW | KA57AM56 |
| LOYSEW | KA57AM143 |
| LOYSEW | KA57AM145 |
| LOYSEW | KA57AM182 |
| LOYSEW | KA57AM184 |
| LOYSEW | KA57AM213/215 |
| LOYSEW | KV57AM56 |
| LOYSEW | KV57AM143 |
| LOYSEW | KV57AM145 |
| LOYSEW | KV57AM182 |
| LOYSEW | KV57AM184 |
| LOYSEW | KV57AM213/215 |
| LOYSEW | KH57AM56 |
| LOYSEW | KH57AM143 |
| LOYSEW | KH57AM145 |
| LOYSEW | KH57AM182 |
| LOYSEW | KH57AM184 |
| LOYSEW | KH57AM213/215 |
| LOYSEW | KAZ57AM56 |
| LOYSEW | KAZ57AM143 |
| LOYSEW | KAZ57AM145 |
| LOYSEW | KAZ57AM182 |
| LOYSEW | KA57AM184 |
| LOYSEW | KAZ57AM213/215 |
| LOYSEW | KVZ57AM56 |
| LOYSEW | KVZ57AM143 |
| LOYSEW | KVZ57AM145 |
| LOYSEW | KVZ57AM182 |
| LOYSEW | KVZ57AM184 |
| LOYSEW | KVZ57AM213/215 |
| LOYSEW | KT57AM56 |
| LOYSEW | KT57AM143 |
| LOYSEW | KT57AM145 |
| LOYSEW | KT57AM182 |
| LOYSEW | KT57AM184 |
| LOYSEW | KT57AM213/215 |
| LOYSEW | K67AM56 |
| LOYSEW | K67AM143 |
| LOYSEW | K67AM145 |
| LOYSEW | K67AM182 |
| LOYSEW | K67AM184 |
| LOYSEW | K67AM213/215 |
| LOYSEW | KA67BAM56 |
| LOYSEW | KA67BAM143 |
| LOYSEW | KA67BAM145 |
| LOYSEW | KA67BAM182 |
| LOYSEW | KA67BAM184 |
| LOYSEW | KA67BAM213/215 |
| LOYSEW | KV67BAM56 |
| LOYSEW | KV67BAM143 |
| LOYSEW | KV67BAM145 |
| LOYSEW | KV67BAM182 |
| LOYSEW | KV67BAM184 |
| LOYSEW | KV67BAM213/215 |
| LOYSEW | KH67BAM56 |
| LOYSEW | KH67BAM143 |
| LOYSEW | KH67BAM145 |
| LOYSEW | KH67BAM182 |
| LOYSEW | KH67BAM184 |
| LOYSEW | KH67BAM213/215 |
| LOYSEW | KF67AM56 |
| LOYSEW | KF67AM143 |
| LOYSEW | KF67AM145 |
| LOYSEW | KF67AM182 |
| LOYSEW | KF67AM184 |
| LOYSEW | KF67AM213/215 |
| LOYSEW | KAF67AM56 |
| LOYSEW | KAF67AM143 |
| LOYSEW | KAF67AM145 |
| LOYSEW | KAF67AM182 |
| LOYSEW | KAF67AM184 |
| LOYSEW | KAF67AM213/215 |
| LOYSEW | KVF67AM56 |
| LOYSEW | KVF67AM143 |
| LOYSEW | KVF67AM145 |
| LOYSEW | KVF67AM182 |
| LOYSEW | KVF67AM184 |
| LOYSEW | KVF67AM213/215 |
| LOYSEW | KHF67AM56 |
| LOYSEW | KHF67AM143 |
| LOYSEW | KHF67AM145 |
| LOYSEW | KHF67AM182 |
| LOYSEW | KHF67AM184 |
| LOYSEW | KHF67AM213/215 |
| LOYSEW | KA67AM56 |
| LOYSEW | KA67AM143 |
| LOYSEW | KA67AM145 |
| LOYSEW | KA67AM182 |
| LOYSEW | KA67AM184 |
| LOYSEW | KA67AM213/215 |
| LOYSEW | KV67AM56 |
| LOYSEW | KV67AM143 |
| LOYSEW | KV67AM145 |
| LOYSEW | KV67AM182 |
| LOYSEW | KV67AM184 |
| LOYSEW | KV67AM213/215 |
| LOYSEW | KH67AM56 |
| LOYSEW | KH67AM143 |
| LOYSEW | KH67AM145 |
| LOYSEW | KH67AM182 |
| LOYSEW | KH67AM184 |
| LOYSEW | KH67AM213/215 |
| LOYSEW | KAZ67AM56 |
| LOYSEW | KAZ67AM143 |
| LOYSEW | KAZ67AM145 |
| LOYSEW | KAZ67AM182 |
| LOYSEW | KAZ67AM184 |
| LOYSEW | KAZ67AM213/215 |
| LOYSEW | KVZ67AM56 |
| LOYSEW | KVZ67AM143 |
| LOYSEW | KVZ67AM145 |
| LOYSEW | KVZ67AM182 |
| LOYSEW | KVZ67AM184 |
| LOYSEW | KVZ67AM213/215 |
| LOYSEW | KHZ67AM56 |
| LOYSEW | KHZ67AM143 |
| LOYSEW | KHZ67AM145 |
| LOYSEW | KHZ67AM182 |
| LOYSEW | KHZ67AM184 |
| LOYSEW | KHZ67AM213/215 |
| LOYSEW | KT67AM56 |
| LOYSEW | KT67AM143 |
| LOYSEW | KT67AM145 |
| LOYSEW | KT67AM182 |
| LOYSEW | KT67AM184 |
| LOYSEW | KT67AM213/215 |
| LOYSEW | K77AM56 |
| LOYSEW | K77AM143 |
| LOYSEW | K77AM145 |
| LOYSEW | K77AM182 |
| LOYSEW | K77AM184 |
| LOYSEW | K77AM213/215 |
| LOYSEW | KA77BAM56 |
| LOYSEW | KA77BAM143 |
| LOYSEW | KA77BAM145 |
| LOYSEW | KA77BAM182 |
| LOYSEW | KA77BAM184 |
| LOYSEW | KA77BAM213/215 |
| LOYSEW | KF77AM56 |
| LOYSEW | KF77AM143 |
| LOYSEW | KF77AM145 |
| LOYSEW | KF77AM182 |
| LOYSEW | KF77AM184 |
| LOYSEW | KF77AM213/215 |
| LOYSEW | KAF77AM56 |
| LOYSEW | KAF77AM143 |
| LOYSEW | KAF77AM145 |
| LOYSEW | KAF77AM182 |
| LOYSEW | KAF77AM184 |
| LOYSEW | KAF77AM213/215 |
| LOYSEW | KVF77AM56 |
| LOYSEW | KVF77AM143 |
| LOYSEW | KVF77AM145 |
| LOYSEW | KVF77AM182 |
| LOYSEW | KVF77AM184 |
| LOYSEW | KVF77AM213/215 |
| LOYSEW | KHF77AM56 |
| LOYSEW | KHF77AM143 |
| LOYSEW | KHF77AM145 |
| LOYSEW | KHF77AM182 |
| LOYSEW | KHF77AM184 |
| LOYSEW | KHF77AM213/215 |
| LOYSEW | KA77AM56 |
| LOYSEW | KA77AM143 |
| LOYSEW | KA77AM145 |
| LOYSEW | KA77AM182 |
| LOYSEW | KA77AM184 |
| LOYSEW | KA77AM213/215 |
| LOYSEW | KV77AM56 |
| LOYSEW | KV77AM143 |
| LOYSEW | KV77AM145 |
| LOYSEW | KV77AM182 |
| LOYSEW | KV77AM184 |
| LOYSEW | KV77AM213/215 |
| LOYSEW | KH77AM56 |
| LOYSEW | KH77AM143 |
| LOYSEW | KH77AM145 |
| LOYSEW | KH77AM182 |
| LOYSEW | KH77AM184 |
| LOYSEW | KH77AM213/215 |
| LOYSEW | KAZ77AM56 |
| LOYSEW | KAZ77AM143 |
| LOYSEW | KAZ77AM145 |
| LOYSEW | KAZ77AM182 |
| LOYSEW | KAZ77AM184 |
| LOYSEW | KAZ77AM213/215 |
| LOYSEW | KVZ77AM56 |
| LOYSEW | KVZ77AM143 |
| LOYSEW | KVZ77AM145 |
| LOYSEW | KVZ77AM182 |
| LOYSEW | KVZ77AM184 |
| LOYSEW | KVZ77AM213/215 |
| LOYSEW | KHZ77AM56 |
| LOYSEW | KHZ77AM143 |
| LOYSEW | KHZ77AM145 |
| LOYSEW | KHZ77AM182 |
| LOYSEW | KHZ77AM184 |
| LOYSEW | KHZ77AM213/215 |
| LOYSEW | KT77AM56 |
| LOYSEW | KT77AM143 |
| LOYSEW | KT77AM145 |
| LOYSEW | KT77AM182 |
| LOYSEW | KT77AM184 |
| LOYSEW | KT77AM213/215 |
| LOYSEW | K87AM143 |
| LOYSEW | K87AM145 |
| LOYSEW | K87AM182 |
| LOYSEW | K87AM184 |
| LOYSEW | K87AM213/215 |
| LOYSEW | K87AM254/256 |
| LOYSEW | K87AM284/286 |
| LOYSEW | KA87BAM143 |
| LOYSEW | KA87BAM145 |
| LOYSEW | KA87BAM182 |
| LOYSEW | KA87BAM184 |
| LOYSEW | KA87BAM213/215 |
| LOYSEW | KA87BAM254/256 |
| LOYSEW | KA87BAM284/286 |
| LOYSEW | KV87BAM143 |
| LOYSEW | KV87BAM145 |
| LOYSEW | KV87BAM182 |
| LOYSEW | KV87BAM184 |
| LOYSEW | KV87BAM213/215 |
| LOYSEW | KV87BAM254/256 |
| LOYSEW | KV87BAM284/286 |
| LOYSEW | KH87BAM143 |
| LOYSEW | KH87BAM145 |
| LOYSEW | KH87BAM182 |
| LOYSEW | KH87BAM184 |
| LOYSEW | KH87BAM213/215 |
| LOYSEW | KH87BAM254/256 |
| LOYSEW | KH87BAM284/286 |
| LOYSEW | KF87AM143 |
| LOYSEW | KF87AM145 |
| LOYSEW | KF87AM182 |
| LOYSEW | KF87AM184 |
| LOYSEW | KF87AM213/215 |
| LOYSEW | KF87AM254/256 |
| LOYSEW | KF87AM284/286 |
| LOYSEW | KAF87AM143 |
| LOYSEW | KAF87AM145 |
| LOYSEW | KAF87AM182 |
| LOYSEW | KAF87AM184 |
| LOYSEW | KAF87AM213/215 |
| LOYSEW | KAF87AM254/256 |
| LOYSEW | KAF87AM284/286 |
| LOYSEW | KVF87AM143 |
| LOYSEW | KVF87AM145 |
| LOYSEW | KVF87AM182 |
| LOYSEW | KVF87AM184 |
| LOYSEW | KVF87AM213/215 |
| LOYSEW | KVF87AM254/256 |
| LOYSEW | KVF87AM284/286 |
| LOYSEW | KA87AM143 |
| LOYSEW | KA87AM145 |
| LOYSEW | KA87AM182 |
| LOYSEW | KA87AM184 |
| LOYSEW | KA87AM213/215 |
| LOYSEW | KA87AM254/256 |
| LOYSEW | KA87AM284/286 |
| LOYSEW | KV87AM143 |
| LOYSEW | KV87AM145 |
| LOYSEW | KV87AM182 |
| LOYSEW | KV87AM184 |
| LOYSEW | KV87AM213/215 |
| LOYSEW | KV87AM254/256 |
| LOYSEW | KV87AM284/286 |
| LOYSEW | KAZ87AM143 |
| LOYSEW | KAZ87AM145 |
| LOYSEW | KAZ87AM182 |
| LOYSEW | KAZ87AM184 |
| LOYSEW | KAZ87AM213/215 |
| LOYSEW | KAZ87AM254/256 |
| LOYSEW | KAZ87AM284/286 |
| LOYSEW | KVZ87AM143 |
| LOYSEW | KVZ87AM145 |
| LOYSEW | KVZ87AM182 |
| LOYSEW | KVZ87AM184 |
| LOYSEW | KVZ87AM213/215 |
| LOYSEW | KVZ87AM254/256 |
| LOYSEW | KVZ87AM284/286 |
| LOYSEW | KT87AM143 |
| LOYSEW | KT87AM145 |
| LOYSEW | KT87AM182 |
| LOYSEW | KT87AM184 |
| LOYSEW | KT87AM213/215 |
| LOYSEW | KT87AM254/256 |
| LOYSEW | KT87AM284/286 |
| LOYSEW | K97AM182 |
| LOYSEW | K97AM184 |
| LOYSEW | K97AM213/215 |
| LOYSEW | K97AM254/256 |
| LOYSEW | K97AM284/286 |
| LOYSEW | K97AM324/326 |
| LOYSEW | K97AM364/365 |
| LOYSEW | KA97BAM182 |
| LOYSEW | KA97BAM184 |
| LOYSEW | KA97BAM213/215 |
| LOYSEW | KA97BAM254/256 |
| LOYSEW | KA97BAM284/286 |
| LOYSEW | KA97BAM324/326 |
| LOYSEW | KA97BAM364/365 |
| LOYSEW | KV97BAM182 |
| LOYSEW | KV97BAM184 |
| LOYSEW | KV97BAM213/215 |
| LOYSEW | KV97BAM254/256 |
| LOYSEW | KV97BAM284/286 |
| LOYSEW | KV97BAM324/326 |
| LOYSEW | KV97BAM364/365 |
| LOYSEW | KH97BAM182 |
| LOYSEW | KH97BAM184 |
| LOYSEW | KH97BAM213/215 |
| LOYSEW | KH97BAM254/256 |
| LOYSEW | KH97BAM284/286 |
| LOYSEW | KH97BAM324/326 |
| LOYSEW | KH97BAM364/365 |
| LOYSEW | KF97AM182 |
| LOYSEW | KF97AM184 |
| LOYSEW | KF97AM213/215 |
| LOYSEW | KF97AM254/256 |
| LOYSEW | KF97AM284/286 |
| LOYSEW | KF97AM324/326 |
| LOYSEW | KF97AM364/365 |
| LOYSEW | KAF97AM182 |
| LOYSEW | KAF97AM184 |
| LOYSEW | KAF97AM213/215 |
| LOYSEW | KAF97AM254/256 |
| LOYSEW | KAF97AM284/286 |
| LOYSEW | KAF97AM324/326 |
| LOYSEW | KAF97AM364/365 |
| LOYSEW | KVF97AM182 |
| LOYSEW | KVF97AM184 |
| LOYSEW | KVF97AM213/215 |
| LOYSEW | KVF97AM254/256 |
| LOYSEW | KVF97AM284/286 |
| LOYSEW | KVF97AM324/326 |
| LOYSEW | KVF97AM364/365 |
| LOYSEW | KHF97AM182 |
| LOYSEW | KHF97AM184 |
| LOYSEW | KHF97AM213/215 |
| LOYSEW | KHF97AM254/256 |
| LOYSEW | KHF97AM284/286 |
| LOYSEW | KHF97AM324/326 |
| LOYSEW | KHF97AM364/365 |
| LOYSEW | KA97AM182 |
| LOYSEW | KA97AM184 |
| LOYSEW | KA97AM213/215 |
| LOYSEW | KA97AM254/256 |
| LOYSEW | KA97AM284/286 |
| LOYSEW | KA97AM324/326 |
| LOYSEW | KA97AM364/365 |
| LOYSEW | KV97AM182 |
| LOYSEW | KV97AM184 |
| LOYSEW | KV97AM213/215 |
| LOYSEW | KV97AM254/256 |
| LOYSEW | KV97AM284/286 |
| LOYSEW | KV97AM324/326 |
| LOYSEW | KV97AM364/365 |
| LOYSEW | KH97AM182 |
| LOYSEW | KH97AM184 |
| LOYSEW | KH97AM213/215 |
| LOYSEW | KH97AM254/256 |
| LOYSEW | KH97AM284/286 |
| LOYSEW | KH97AM324/326 |
| LOYSEW | KH97AM364/365 |
| LOYSEW | KAZ97AM182 |
| LOYSEW | KAZ97AM184 |
| LOYSEW | KAZ97AM213/215 |
| LOYSEW | KAZ97AM254/256 |
| LOYSEW | KAZ97AM284/286 |
| LOYSEW | KAZ97AM324/326 |
| LOYSEW | KAZ97AM364/365 |
| LOYSEW | KVZ97AM182 |
| LOYSEW | KVZ97AM184 |
| LOYSEW | KVZ97AM213/215 |
| LOYSEW | KVZ97AM254/256 |
| LOYSEW | KVZ97AM284/286 |
| LOYSEW | KVZ97AM324/326 |
| LOYSEW | KVZ97AM364/365 |
| LOYSEW | KHZ97AM182 |
| LOYSEW | KHZ97AM184 |
| LOYSEW | KHZ97AM213/215 |
| LOYSEW | KHZ97AM254/256 |
| LOYSEW | KHZ97AM284/286 |
| LOYSEW | KHZ97AM324/326 |
| LOYSEW | KHZ97AM364/365 |
| LOYSEW | KT97AM182 |
| LOYSEW | KT97AM184 |
| LOYSEW | KT97AM213/215 |
| LOYSEW | KT97AM254/256 |
| LOYSEW | KT97AM284/286 |
| LOYSEW | KT97AM324/326 |
| LOYSEW | KT97AM364/365 |
| LOYSEW | K107AM182 |
| LOYSEW | K107AM184 |
| LOYSEW | K107AM213/215 |
| LOYSEW | K107AM254/256 |
| LOYSEW | K107AM284/286 |
| LOYSEW | K107AM324/326 |
| LOYSEW | K107AM364/365 |
| LOYSEW | KA107BAM182 |
| LOYSEW | KA107BAM184 |
| LOYSEW | KA107BAM213/215 |
| LOYSEW | KA107BAM254/256 |
| LOYSEW | KA107BAM284/286 |
| LOYSEW | KA107BAM324/326 |
| LOYSEW | KA107BAM364/365 |
| LOYSEW | KV107BAM182 |
| LOYSEW | KV107BAM184 |
| LOYSEW | KV107BAM213/215 |
| LOYSEW | KV107BAM254/256 |
| LOYSEW | KV107BAM284/286 |
| LOYSEW | KV107BAM324/326 |
| LOYSEW | KV107BAM364/365 |
| LOYSEW | KH107BAM182 |
| LOYSEW | KH107BAM184 |
| LOYSEW | KH107BAM213/215 |
| LOYSEW | KH107BAM254/256 |
| LOYSEW | KH107BAM284/286 |
| LOYSEW | KH107BAM324/326 |
| LOYSEW | KH107BAM364/365 |
| LOYSEW | KF107AM182 |
| LOYSEW | KF107AM184 |
| LOYSEW | KF107AM213/215 |
| LOYSEW | KF107AM254/256 |
| LOYSEW | KF107AM284/286 |
| LOYSEW | KF107AM324/326 |
| LOYSEW | KF107AM364/365 |
| LOYSEW | KAF107AM182 |
| LOYSEW | KAF107AM184 |
| LOYSEW | KAF107AM213/215 |
| LOYSEW | KAF107AM254/256 |
| LOYSEW | KAF107AM284/286 |
| LOYSEW | KAF107AM324/326 |
| LOYSEW | KAF107AM364/365 |
| LOYSEW | KVF107AM182 |
| LOYSEW | KVF107AM184 |
| LOYSEW | KVF107AM213/215 |
| LOYSEW | KVF107AM254/256 |
| LOYSEW | KVF107AM284/286 |
| LOYSEW | KVF107AM324/326 |
| LOYSEW | KVF107AM364/365 |
| LOYSEW | KHF107AM182 |
| LOYSEW | KHF107AM184 |
| LOYSEW | KHF107AM213/215 |
| LOYSEW | KHF107AM254/256 |
| LOYSEW | KHF107AM284/286 |
| LOYSEW | KHF107AM324/326 |
| LOYSEW | KHF107AM364/365 |
| LOYSEW | KA107AM182 |
| LOYSEW | KA107AM184 |
| LOYSEW | KA107AM213/215 |
| LOYSEW | KA107AM254/256 |
| LOYSEW | KA107AM284/286 |
| LOYSEW | KA107AM324/326 |
| LOYSEW | KA107AM364/365 |
| LOYSEW | KV107AM182 |
| LOYSEW | KV107AM184 |
| LOYSEW | KV107AM213/215 |
| LOYSEW | KV107AM254/256 |
| LOYSEW | KV107AM284/286 |
| LOYSEW | KV107AM324/326 |
| LOYSEW | KV107AM364/365 |
| LOYSEW | KH107AM182 |
| LOYSEW | KH107AM184 |
| LOYSEW | KH107AM213/215 |
| LOYSEW | KH107AM254/256 |
| LOYSEW | KH107AM284/286 |
| LOYSEW | KH107AM324/326 |
| LOYSEW | KH107AM364/365 |
| LOYSEW | KAZ107AM182 |
| LOYSEW | KAZ107AM184 |
| LOYSEW | KAZ107AM213/215 |
| LOYSEW | KAZ107AM254/256 |
| LOYSEW | KAZ107AM284/286 |
| LOYSEW | KAZ107AM324/326 |
| LOYSEW | KAZ107AM364/365 |
| LOYSEW | KVZ107AM182 |
| LOYSEW | KVZ107AM184 |
| LOYSEW | KVZ107AM213/215 |
| LOYSEW | KVZ107AM254/256 |
| LOYSEW | KVZ107AM284/286 |
| LOYSEW | KVZ107AM324/326 |
| LOYSEW | KVZ107AM364/365 |
| LOYSEW | KHZ107AM182 |
| LOYSEW | KHZ107AM184 |
| LOYSEW | KHZ107AM213/215 |
| LOYSEW | KHZ107AM254/256 |
| LOYSEW | KHZ107AM284/286 |
| LOYSEW | KHZ107AM324/326 |
| LOYSEW | KHZ107AM364/365 |
| LOYSEW | KT107AM182 |
| LOYSEW | KT107AM184 |
| LOYSEW | KT107AM213/215 |
| LOYSEW | KT107AM254/256 |
| LOYSEW | KT107AM284/286 |
| LOYSEW | KT107AM324/326 |
| LOYSEW | KT107AM364/365 |
| LOYSEW | K127AM213/215 |
| LOYSEW | K127AM254/256 |
| LOYSEW | K127AM284/286 |
| LOYSEW | K127AM324/326 |
| LOYSEW | K127AM364/365 |
| LOYSEW | KA127BAM213/215 |
| LOYSEW | KA127BAM254/256 |
| LOYSEW | KA127BAM284/286 |
| LOYSEW | KA127BAM324/326 |
| LOYSEW | KA127BAM364/365 |
| LOYSEW | KV127BAM213/215 |
| LOYSEW | KV127BAM254/256 |
| LOYSEW | KV127BAM284/286 |
| LOYSEW | KV127BAM324/326 |
| LOYSEW | KV127BAM364/365 |
| LOYSEW | KH127BAM213/215 |
| LOYSEW | KH127BAM254/256 |
| LOYSEW | KH127BAM284/286 |
| LOYSEW | KH127BAM324/326 |
| LOYSEW | KH127BAM364/365 |
| LOYSEW | KF127AM213/215 |
| LOYSEW | KF127AM254/256 |
| LOYSEW | KF127AM284/286 |
| LOYSEW | KF127AM324/326 |
| LOYSEW | KF127AM364/365 |
| LOYSEW | KAF127AM213/215 |
| LOYSEW | KAF127AM254/256 |
| LOYSEW | KAF127AM284/286 |
| LOYSEW | KAF127AM324/326 |
| LOYSEW | KAF127AM364/365 |
| LOYSEW | KHF127AM213/215 |
| LOYSEW | KHF127AM254/256 |
| LOYSEW | KHF127AM284/286 |
| LOYSEW | KHF127AM324/326 |
| LOYSEW | KHF127AM364/365 |
| LOYSEW | KA127AM213/215 |
| LOYSEW | KA127AM254/256 |
| LOYSEW | KA127AM284/286 |
| LOYSEW | KA127AM324/326 |
| LOYSEW | KA127AM364/365 |
| LOYSEW | KH127AM213/215 |
| LOYSEW | KH127AM254/256 |
| LOYSEW | KH127AM284/286 |
| LOYSEW | KH127AM324/326 |
| LOYSEW | KH127AM364/365 |
| LOYSEW | KAZ127AM213/215 |
| LOYSEW | KAZ127AM254/256 |
| LOYSEW | KAZ127AM284/286 |
| LOYSEW | KAZ127AM324/326 |
| LOYSEW | KAZ127AM364/365 |
| LOYSEW | KHZ127AM213/215 |
| LOYSEW | KHZ127AM254/256 |
| LOYSEW | KHZ127AM284/286 |
| LOYSEW | KHZ127AM324/326 |
| LOYSEW | KHZ127AM364/365 |
| LOYSEW | KT127AM213/215 |
| LOYSEW | KT127AM254/256 |
| LOYSEW | KT127AM284/286 |
| LOYSEW | KT127AM324/326 |
| LOYSEW | KT127AM364/365 |
| LOYSEW | K157AM254/256 |
| LOYSEW | K157AM284/286 |
| LOYSEW | K157AM324/326 |
| LOYSEW | K157AM364/365 |
| LOYSEW | KA157BAM254/256 |
| LOYSEW | KA157BAM284/286 |
| LOYSEW | KA157BAM324/326 |
| LOYSEW | KA157BAM364/365 |
| LOYSEW | KH157BAM254/256 |
| LOYSEW | KH157BAM284/286 |
| LOYSEW | KH157BAM324/326 |
| LOYSEW | KH157BAM364/365 |
| LOYSEW | KF157AM254/256 |
| LOYSEW | KF157AM284/286 |
| LOYSEW | KF157AM324/326 |
| LOYSEW | KF157AM364/365 |
| LOYSEW | KAF157AM254/256 |
| LOYSEW | KAF157AM284/286 |
| LOYSEW | KAF157AM324/326 |
| LOYSEW | KAF157AM364/365 |
| LOYSEW | KHF157AM254/256 |
| LOYSEW | KHF157AM284/286 |
| LOYSEW | KHF157AM324/326 |
| LOYSEW | KHF157AM364/365 |
| LOYSEW | KA157AM254/256 |
| LOYSEW | KA157AM284/286 |
| LOYSEW | KA157AM324/326 |
| LOYSEW | KA157AM364/365 |
| LOYSEW | KH157AM254/256 |
| LOYSEW | KH157AM284/286 |
| LOYSEW | KH157AM324/326 |
| LOYSEW | KH157AM364/365 |
| LOYSEW | KAZ157AM254/256 |
| LOYSEW | KAZ157AM284/286 |
| LOYSEW | KAZ157AM324/326 |
| LOYSEW | KAZ157AM364/365 |
| LOYSEW | KHZ157AM254/256 |
| LOYSEW | KHZ157AM284/286 |
| LOYSEW | KHZ157AM324/326 |
| LOYSEW | KHZ157AM364/365 |
| LOYSEW | KT157AM254/256 |
| LOYSEW | KT157AM284/286 |
| LOYSEW | KT157AM324/326 |
| LOYSEW | KT157AM364/365 |
| LOYSEW | K167AM254/256 |
| LOYSEW | K167AM284/286 |
| LOYSEW | K167AM324/326 |
| LOYSEW | K167AM364/365 |
| LOYSEW | KH167BAM254/256 |
| LOYSEW | KH167BAM284/286 |
| LOYSEW | KH167BAM324/326 |
| LOYSEW | KH167BAM364/365 |
| LOYSEW | KH167AM254/256 |
| LOYSEW | KH167AM284/286 |
| LOYSEW | KH167AM324/326 |
| LOYSEW | KH167AM364/365 |
| LOYSEW | K187AM254/256 |
| LOYSEW | K187AM284/286 |
| LOYSEW | K187AM324/326 |
| LOYSEW | K187AM364/365 |
| LOYSEW | KH187BAM254/256 |
| LOYSEW | KH187BAM284/286 |
| LOYSEW | KH187BAM324/326 |
| LOYSEW | KH187BAM364/365 |
| LOYSEW | KH187AM254/256 |
| LOYSEW | KH187AM284/286 |
| LOYSEW | KH187AM324/326 |
| LOYSEW | KH187AM364/365 |
| LOYSEW | K..19AM63 |
| LOYSEW | K..19AM71 |
| LOYSEW | K..19AM80 |
| LOYSEW | K..19AM90 |
| LOYSEW | K..29AM63 |
| LOYSEW | K..29AM71 |
| LOYSEW | K..29AM80 |
| LOYSEW | K..29AM90 |
| LOYSEW | K..37AM63 |
| LOYSEW | K..37AM71 |
| LOYSEW | K..37AM80 |
| LOYSEW | K..37AM90 |
| LOYSEW | K..47AM63 |
| LOYSEW | K..47AM71 |
| LOYSEW | K..47AM80 |
| LOYSEW | K..47AM90 |
| LOYSEW | K..47AM100 |
| LOYSEW | K..47AM112 |
| LOYSEW | K..47AM132S/M |
| LOYSEW | K..57AM63 |
| LOYSEW | K..57AM71 |
| LOYSEW | K..57AM80 |
| LOYSEW | K..57AM90 |
| LOYSEW | K..57AM100 |
| LOYSEW | K..57AM112 |
| LOYSEW | K..57AM132S/M |
| LOYSEW | K..67AM63 |
| LOYSEW | K..67AM71 |
| LOYSEW | K..67AM80 |
| LOYSEW | K..67AM90 |
| LOYSEW | K..67AM100 |
| LOYSEW | K..67AM112 |
| LOYSEW | K..67AM132S/M |
| LOYSEW | K..77AM63 |
| LOYSEW | K..77AM71 |
| LOYSEW | K..77AM80 |
| LOYSEW | K..77AM90 |
| LOYSEW | K..77AM100 |
| LOYSEW | K..77AM112 |
| LOYSEW | K..77AM132S/M |
| LOYSEW | K..77AM132ML |
| LOYSEW | K..87AM63 |
| LOYSEW | K..87AM71 |
| LOYSEW | K..87AM80 |
| LOYSEW | K..87AM90 |
| LOYSEW | K..87AM100 |
| LOYSEW | K..87AM112 |
| LOYSEW | K..87AM132S/M |
| LOYSEW | K..87AM132ML |
| LOYSEW | K..87AM160 |
| LOYSEW | K..87AM180 |
| LOYSEW | K..97AM100 |
| LOYSEW | K..97AM112 |
| LOYSEW | K..97AM132S/M |
| LOYSEW | K..97AM132ML |
| LOYSEW | K..97AM160 |
| LOYSEW | K..97AM180 |
| LOYSEW | K..97AM200 |
| LOYSEW | K..107AM100 |
| LOYSEW | K..107AM112 |
| LOYSEW | K..107AM132S/M |
| LOYSEW | K..107AM132ML |
| LOYSEW | K..107AM160 |
| LOYSEW | K..107AM180 |
| LOYSEW | K..107AM200 |
| LOYSEW | K..107AM225 |
| LOYSEW | K..127AM132S/M |
| LOYSEW | K..127AM132ML |
| LOYSEW | K..127AM160 |
| LOYSEW | K..127AM180 |
| LOYSEW | K..127AM200 |
| LOYSEW | K..127AM225 |
| LOYSEW | K..127AM250 |
| LOYSEW | K..127AM280 |
| LOYSEW | K..157AM160 |
| LOYSEW | K..157AM180 |
| LOYSEW | K..157AM200 |
| LOYSEW | K..157AM225 |
| LOYSEW | K..157AM250 |
| LOYSEW | K..157AM280 |
| LOYSEW | K..167AM160 |
| LOYSEW | K..167AM180 |
| LOYSEW | K..167AM200 |
| LOYSEW | K..167AM225 |
| LOYSEW | K..167AM250 |
| LOYSEW | K..167AM280 |
| LOYSEW | K..187AM160 |
| LOYSEW | K..187AM180 |
| LOYSEW | K..187AM200 |
| LOYSEW | K..187AM225 |
| LOYSEW | K..187AM250 |
| LOYSEW | K..187AM280 |
| LOYSEW | K..47R37AM56 |
| LOYSEW | K..47R37AM143 |
| LOYSEW | K..47R37AM145 |
| LOYSEW | K..57R37AM56 |
| LOYSEW | K..57R37AM143 |
| LOYSEW | K..57R37AM145 |
| LOYSEW | K..67R37AM56 |
| LOYSEW | K..67R37AM143 |
| LOYSEW | K..67R37AM145 |
| LOYSEW | K..77R37AM56 |
| LOYSEW | K..77R37AM143 |
| LOYSEW | K..77R37AM145 |
| LOYSEW | K..87R57AM56 |
| LOYSEW | K..87R57AM143 |
| LOYSEW | K..87R57AM145 |
| LOYSEW | K..87R57AM182 |
| LOYSEW | K..87R57AM213/215 |
| LOYSEW | K..97R57AM56 |
| LOYSEW | K..97R57AM143 |
| LOYSEW | K..97R57AM145 |
| LOYSEW | K..97R57AM182 |
| LOYSEW | K..97R57AM213/215 |
| LOYSEW | K..107R77AM56 |
| LOYSEW | K..107R77AM143 |
| LOYSEW | K..107R77AM145 |
| LOYSEW | K..107R77AM182 |
| LOYSEW | K..107R77AM213/215 |
| LOYSEW | K..127R77AM56 |
| LOYSEW | K..127R77AM143 |
| LOYSEW | K..127R77AM145 |
| LOYSEW | K..127R77AM182 |
| LOYSEW | K..127R77AM213/215 |
| LOYSEW | K..127R87AM143 |
| LOYSEW | K..127R87AM145 |
| LOYSEW | K..127R87AM182 |
| LOYSEW | K..127R87AM213/215 |
| LOYSEW | K..127R87AM284/286 |
| LOYSEW | K..157R97AM182 |
| LOYSEW | K..157R97AM213/215 |
| LOYSEW | K..157R97AM284/286 |
| LOYSEW | K..157R97AM324/326 |
| LOYSEW | K..157R97AM364/365 |
| LOYSEW | K..157R107AM182 |
| LOYSEW | K..157R107AM213/215 |
| LOYSEW | K..157R107AM284/286 |
| LOYSEW | K..157R107AM324/326 |
| LOYSEW | K..157R107AM364/365 |
| LOYSEW | K..167R97AM182 |
| LOYSEW | K..167R97AM213/215 |
| LOYSEW | K..167R97AM284/286 |
| LOYSEW | K..167R97AM324/326 |
| LOYSEW | K..167R97AM364/365 |
| LOYSEW | K..167R107AM182 |
| LOYSEW | K..167R107AM213/215 |
| LOYSEW | K..167R107AM284/286 |
| LOYSEW | K..167R107AM324/326 |
| LOYSEW | K..167R107AM364/365 |
| LOYSEW | K..187R97AM182 |
| LOYSEW | K..187R97AM213/215 |
| LOYSEW | K..187R97AM284/286 |
| LOYSEW | K..187R97AM324/326 |
| LOYSEW | K..187R97AM364/365 |
| LOYSEW | K..187R107AM182 |
| LOYSEW | K..187R107AM213/215 |
| LOYSEW | K..187R107AM284/286 |
| LOYSEW | K..187R107AM324/326 |
| LOYSEW | K..187R107AM364/365 |
| LOYSEW | K..19AD1 |
| LOYSEW | K..19AD2 |
| LOYSEW | K..29AD1 |
| LOYSEW | K..29AD2 |
| LOYSEW | K..37AD1 |
| LOYSEW | K..37AD2 |
| LOYSEW | K..39AD2 |
| LOYSEW | K..39AD3 |
| LOYSEW | K..47AD2 |
| LOYSEW | K..47AD3 |
| LOYSEW | K..47AD4 |
| LOYSEW | K..57AD2 |
| LOYSEW | K..57AD3 |
| LOYSEW | K..67AD2 |
| LOYSEW | K..67AD3 |
| LOYSEW | K..77AD2 |
| LOYSEW | K..77AD3 |
| LOYSEW | K..77AD4 |
| LOYSEW | K..87AD2 |
| LOYSEW | K..87AD3 |
| LOYSEW | K..87AD4 |
| LOYSEW | K..87AD5 |
| LOYSEW | K..97AD3 |
| LOYSEW | K..97AD4 |
| LOYSEW | K..97AD5 |
| LOYSEW | K..97AD6 |
| LOYSEW | K..107AD3 |
| LOYSEW | K..107AD4 |
| LOYSEW | K..107AD5 |
| LOYSEW | K..107AD6 |
| LOYSEW | K..127AD4 |
| LOYSEW | K..127AD5 |
| LOYSEW | K..127AD6 |
| LOYSEW | K..127AD7 |
| LOYSEW | K..127AD8 |
| LOYSEW | K..157AD5 |
| LOYSEW | K..157AD6 |
| LOYSEW | K..157AD7 |
| LOYSEW | K..157AD8 |
| LOYSEW | K..167AD5 |
| LOYSEW | K..167AD6 |
| LOYSEW | K..167AD7 |
| LOYSEW | K..167AD8 |
| LOYSEW | K..187AD5 |
| LOYSEW | K..187AD6 |
| LOYSEW | K..187AD7 |
| LOYSEW | K..187AD8 |
| LOYSEW | K..19AD1 |
| LOYSEW | K..19AD2,AD2/ZR |
| LOYSEW | K..29AD1 |
| LOYSEW | K..29AD2,AD2/ZR |
| LOYSEW | K..37AD1 |
| LOYSEW | K..37AD2,AD2/ZR |
| LOYSEW | K..39AD2,AD2/ZR |
| LOYSEW | K..39AD3,AD3/ZR |
| LOYSEW | K..47AD2,AD2/ZR |
| LOYSEW | K..47AD3,AD3/ZR |
| LOYSEW | K..49AD2,AD2/ZR |
| LOYSEW | K..49AD3,AD3/ZR |
| LOYSEW | K..49AD4,AD4/ZR |
| LOYSEW | K..77AD2,AD2/ZR |
| LOYSEW | K..77AD3,AD3/ZR |
| LOYSEW | K..77AD4,AD4/ZR |
| LOYSEW | K..87AD2,AD2/ZR |
| LOYSEW | K..87AD3,AD3/ZR |
| LOYSEW | K..87AD4,AD4/ZR |
| LOYSEW | K..87AD5,AD5/ZR |
| LOYSEW | K..97AD3,AD3/ZR |
| LOYSEW | K..97AD4,AD4/ZR |
| LOYSEW | K..97AD5,AD5/ZR |
| LOYSEW | K..97AD6,AD6/ZR |
| LOYSEW | K..107AD3,AD3/ZR |
| LOYSEW | K..107AD4,AD4/ZR |
| LOYSEW | K..107AD5,AD5/ZR |
| LOYSEW | K..107AD6,AD6/ZR |
| LOYSEW | K..127AD4,AD4/ZR |
| LOYSEW | K..127AD5,AD5/ZR |
| LOYSEW | K..127AD6,AD6/ZR |
| LOYSEW | K..127AD7,AD7/ZR |
| LOYSEW | K..127AD8,AD8/ZR |
| LOYSEW | K..157AD5,AD5/ZR |
| LOYSEW | K..157AD6,AD6/ZR |
| LOYSEW | K..157AD7,AD7/ZR |
| LOYSEW | K..157AD8,AD8/ZR |
| LOYSEW | K..167AD5,AD5/ZR |
| LOYSEW | K..167AD6,AD6/ZR |
| LOYSEW | K..167AD7,AD7/ZR |
| LOYSEW | K..167AD8,AD8/ZR |
| LOYSEW | K..187AD5,AD5/ZR |
| LOYSEW | K..187AD6,AD6/ZR |
| LOYSEW | K..187AD7,AD7/ZR |
| LOYSEW | K..187AD8,AD8/ZR |
| LOYSEW | K..47R37AD1 |
| LOYSEW | K..47R37AD2 |
| LOYSEW | K..57R37AD1 |
| LOYSEW | K..57R37AD2 |
| LOYSEW | K..67R37AD1 |
| LOYSEW | K..67R37AD2 |
| LOYSEW | K..49R37AD1 |
| LOYSEW | K..49R37AD2 |
| LOYSEW | K..77R37AD1 |
| LOYSEW | K..77R37AD2 |
| LOYSEW | K..87R57AD2 |
| LOYSEW | K..87R57AD3 |
| LOYSEW | K..97R57AD2 |
| LOYSEW | K..97R57AD3 |
| LOYSEW | K..107R77AD2 |
| LOYSEW | K..107R77AD3 |
| LOYSEW | K..127R77AD2 |
| LOYSEW | K..127R77AD3 |
| LOYSEW | K..127R77AD4 |
| LOYSEW | K..127R87AD2 |
| LOYSEW | K..127R87AD3 |
| LOYSEW | K..127R87AD4 |
| LOYSEW | K..127R87AD5 |
| LOYSEW | K..157R97AD3 |
| LOYSEW | K..157R97AD4 |
| LOYSEW | K..157R97AD5 |
| LOYSEW | K..157R97AD6 |
| LOYSEW | K..167R97AD3 |
| LOYSEW | K..167R97AD4 |
| LOYSEW | K..167R97AD5 |
| LOYSEW | K..167R97AD6 |
| LOYSEW | K..187R97AD3 |
| LOYSEW | K..187R97AD4 |
| LOYSEW | K..187R97AD5 |
| LOYSEW | K..187R97AD6 |
| LOYSEW | K..157R107AD3 |
| LOYSEW | K..157R107AD4 |
| LOYSEW | K..157R107AD5 |
| LOYSEW | K..157R107AD6 |
| LOYSEW | K..167R107AD3 |
| LOYSEW | K..167R107AD4 |
| LOYSEW | K..167R107AD5 |
| LOYSEW | K..167R107AD6 |
| LOYSEW | K..187R107AD3 |
| LOYSEW | K..187R107AD4 |
| LOYSEW | K..187R107AD5 |
| LOYSEW | K..187R107AD6 |
| LOYSEW | K..37AD2/P |
| LOYSEW | K..47AD2/P |
| LOYSEW | K..47AD3/P |
| LOYSEW | K..57AD2/P |
| LOYSEW | K..57AD3/P |
| LOYSEW | K..67AD2/P |
| LOYSEW | K..67AD3/P |
| LOYSEW | K..77AD2/P |
| LOYSEW | K..77AD3/P |
| LOYSEW | K..77AD4/P |
| LOYSEW | K..87AD2/P |
| LOYSEW | K..87AD3/P |
| LOYSEW | K..87AD4/P |
| LOYSEW | K..87AD5/P |
| LOYSEW | K..97AD3/P |
| LOYSEW | K..97AD4/P |
| LOYSEW | K..97AD5/P |
| LOYSEW | K..107AD3/P |
| LOYSEW | K..107AD4/P |
| LOYSEW | K..107AD5/P |
| LOYSEW | K..107AD6/P |
| LOYSEW | K..127AD4/P |
| LOYSEW | K..127AD5/P |
| LOYSEW | K..127AD6/P |
| LOYSEW | K..127AD7/P |
| LOYSEW | K..157AD5/P |
| LOYSEW | K..157AD6/P |
| LOYSEW | K..157AD7/P |
| LOYSEW | K..167AD5/P |
| LOYSEW | K..167AD6/P |
| LOYSEW | K..167AD7/P |
| LOYSEW | K..187AD5/P |
| LOYSEW | K..187AD6/P |
| LOYSEW | K..187AD7/P |
| LOYSEW | K..19AR71 |
| LOYSEW | K..19AR80 |
| LOYSEW | K..19AR90 |
| LOYSEW | K..29AR71 |
| LOYSEW | K..29AR80 |
| LOYSEW | K..29AR90 |
| LOYSEW | K..37AR71 |
| LOYSEW | K..37AR80 |
| LOYSEW | K..37AR90 |
| LOYSEW | K..39AR71 |
| LOYSEW | K..39AR80 |
| LOYSEW | K..39AR90 |
| LOYSEW | K..39AR100 |
| LOYSEW | K..39AR112 |
| LOYSEW | K..47AR71 |
| LOYSEW | K..47AR80 |
| LOYSEW | K..47AR90 |
| LOYSEW | K..47AR100 |
| LOYSEW | K..47AR112 |
| LOYSEW | K..57AR71 |
| LOYSEW | K..57AR80 |
| LOYSEW | K..57AR90 |
| LOYSEW | K..57AR100 |
| LOYSEW | K..57AR112 |
| LOYSEW | K..67AR71 |
| LOYSEW | K..67AR80 |
| LOYSEW | K..67AR90 |
| LOYSEW | K..67AR100 |
| LOYSEW | K..67AR112 |
| LOYSEW | K..49AR71 |
| LOYSEW | K..49AR80 |
| LOYSEW | K..49AR90 |
| LOYSEW | K..49AR100 |
| LOYSEW | K..49AR112 |
| LOYSEW | K..49AR132S/M |
| LOYSEW | K..49AR132ML |
| LOYSEW | K..77AR71 |
| LOYSEW | K..77AR80 |
| LOYSEW | K..77AR90 |
| LOYSEW | K..77AR100 |
| LOYSEW | K..77AR112 |
| LOYSEW | K..77AR132S/M |
| LOYSEW | K..77AR132ML |
| LOYSEW | K..87AR80 |
| LOYSEW | K..87AR90 |
| LOYSEW | K..87AR100 |
| LOYSEW | K..87AR112 |
| LOYSEW | K..87AR132S/M |
| LOYSEW | K..87AR132ML |
| LOYSEW | K..87AR160 |
| LOYSEW | K..87AR180 |
| LOYSEW | K..97AR100 |
| LOYSEW | K..97AR112 |
| LOYSEW | K..97AR132S/M |
| LOYSEW | K..97AR132ML |
| LOYSEW | K..97AR160 |
| LOYSEW | K..97AR180 |
| LOYSEW | K..107AR100 |
| LOYSEW | K..107AR112 |
| LOYSEW | K..107AR132S/M |
| LOYSEW | K..107AR132ML |
| LOYSEW | K..107AR160 |
| LOYSEW | K..107AR180 |
| LOYSEW | K..127AR132S/M |
| LOYSEW | K..127AR132ML |
| LOYSEW | K..127AR160 |
| LOYSEW | K..127AR180 |
| LOYSEW | K..157AR160 |
| LOYSEW | K..157AR180 |
| LOYSEW | K..167AR160 |
| LOYSEW | K..167AR180 |
| LOYSEW | K..187AR160 |
| LOYSEW | K..187AR180 |
| LOYSEW | S37 |
| LOYSEW | S47 |
| LOYSEW | S57 |
| LOYSEW | S67 |
| LOYSEW | S67R37 |
| LOYSEW | S77 |
| LOYSEW | S77R37 |
| LOYSEW | S87 |
| LOYSEW | S87R57 |
| LOYSEW | S97 |
| LOYSEW | S97R57 |
| LOYSEW | S37AD.. |
| LOYSEW | S47AD.. |
| LOYSEW | S57AD.. |
| LOYSEW | S67AD.. |
| LOYSEW | S67R37AD.. |
| LOYSEW | S77AD.. |
| LOYSEW | S77R37AD.. |
| LOYSEW | S87AD.. |
| LOYSEW | S87R57AD.. |
| LOYSEW | S97AD.. |
| LOYSEW | S97R57AD.. |
| LOYSEW | S37AM56 |
| LOYSEW | S37AM143 |
| LOYSEW | S37AM145 |
| LOYSEW | SF37AM56 |
| LOYSEW | SF37AM143 |
| LOYSEW | SF37AM145 |
| LOYSEW | SHF37AM56 |
| LOYSEW | SHF37AM143 |
| LOYSEW | SHF37AM145 |
| LOYSEW | SAF37AM56 |
| LOYSEW | SAF37AM143 |
| LOYSEW | SAF37AM145 |
| LOYSEW | SA37AM56 |
| LOYSEW | SA37AM143 |
| LOYSEW | SA37AM145 |
| LOYSEW | SH37AM56 |
| LOYSEW | SH37AM143 |
| LOYSEW | SH37AM145 |
| LOYSEW | ST37AM56 |
| LOYSEW | ST37AM143 |
| LOYSEW | ST37AM145 |
| LOYSEW | S47AM56 |
| LOYSEW | S47AM143 |
| LOYSEW | S47AM145 |
| LOYSEW | SF47AM56 |
| LOYSEW | SF47AM143 |
| LOYSEW | SF47AM145 |
| LOYSEW | SAF47AM56 |
| LOYSEW | SAF47AM143 |
| LOYSEW | SAF47AM145 |
| LOYSEW | SHF47AM56 |
| LOYSEW | SHF47AM143 |
| LOYSEW | SHF47AM145 |
| LOYSEW | SA47AM56 |
| LOYSEW | SA47AM143 |
| LOYSEW | SA47AM145 |
| LOYSEW | SH47AM56 |
| LOYSEW | SH47AM143 |
| LOYSEW | SH47AM145 |
| LOYSEW | SAZ47AM56 |
| LOYSEW | SAZ47AM143 |
| LOYSEW | SAZ47AM145 |
| LOYSEW | SHZ47AM56 |
| LOYSEW | SHZ47AM143 |
| LOYSEW | SHZ47AM145 |
| LOYSEW | ST47AM56 |
| LOYSEW | ST47AM143 |
| LOYSEW | ST47AM145 |
| LOYSEW | S57AM56 |
| LOYSEW | S57AM143 |
| LOYSEW | S57AM145 |
| LOYSEW | SF57AM56 |
| LOYSEW | SF57AM143 |
| LOYSEW | SF57AM145 |
| LOYSEW | SAF57AM56 |
| LOYSEW | SAF57AM143 |
| LOYSEW | SAF57AM145 |
| LOYSEW | SHF57AM56 |
| LOYSEW | SHF57AM143 |
| LOYSEW | SHF57AM145 |
| LOYSEW | SA57AM56 |
| LOYSEW | SA57AM143 |
| LOYSEW | SA57AM145 |
| LOYSEW | SH57AM56 |
| LOYSEW | SH57AM143 |
| LOYSEW | SH57AM145 |
| LOYSEW | SAZ57AM56 |
| LOYSEW | SAZ57AM143 |
| LOYSEW | SAZ57AM145 |
| LOYSEW | SHZ57AM56 |
| LOYSEW | SHZ57AM143 |
| LOYSEW | SHZ57AM145 |
| LOYSEW | ST57AM56 |
| LOYSEW | ST57AM143 |
| LOYSEW | ST57AM145 |
| LOYSEW | S67AM56 |
| LOYSEW | S67AM143 |
| LOYSEW | S67AM145 |
| LOYSEW | S67AM182 |
| LOYSEW | S67AM184 |
| LOYSEW | S67AM213/215 |
| LOYSEW | SF67AM56 |
| LOYSEW | SF67AM143 |
| LOYSEW | SF67AM145 |
| LOYSEW | SF67AM182 |
| LOYSEW | SF67AM184 |
| LOYSEW | SF67AM213/215 |
| LOYSEW | SAF67AM56 |
| LOYSEW | SAF67AM143 |
| LOYSEW | SAF67AM145 |
| LOYSEW | SAF67AM182 |
| LOYSEW | SAF67AM184 |
| LOYSEW | SAF67AM213/215 |
| LOYSEW | SHF67AM56 |
| LOYSEW | SHF67AM143 |
| LOYSEW | SHF67AM145 |
| LOYSEW | SHF67AM182 |
| LOYSEW | SHF67AM184 |
| LOYSEW | SHF67AM213/215 |
| LOYSEW | SA67AM56 |
| LOYSEW | SA67AM143 |
| LOYSEW | SA67AM145 |
| LOYSEW | SA67AM182 |
| LOYSEW | SA67AM184 |
| LOYSEW | SA67AM213/215 |
| LOYSEW | SH67AM56 |
| LOYSEW | SH67AM143 |
| LOYSEW | SH67AM145 |
| LOYSEW | SH67AM182 |
| LOYSEW | SH67AM184 |
| LOYSEW | SH67AM213/215 |
| LOYSEW | SAZ67AM56 |
| LOYSEW | SAZ67AM143 |
| LOYSEW | SAZ67AM145 |
| LOYSEW | SAZ67AM182 |
| LOYSEW | SAZ67AM184 |
| LOYSEW | SAZ67AM213/215 |
| LOYSEW | SHZ67AM56 |
| LOYSEW | SHZ67AM143 |
| LOYSEW | SHZ67AM145 |
| LOYSEW | SHZ67AM182 |
| LOYSEW | SHZ67AM184 |
| LOYSEW | SHZ67AM213/215 |
| LOYSEW | ST67AM56 |
| LOYSEW | ST67AM143 |
| LOYSEW | ST67AM145 |
| LOYSEW | ST67AM182 |
| LOYSEW | ST67AM184 |
| LOYSEW | ST67AM213/215 |
| LOYSEW | S77AM56 |
| LOYSEW | S77AM143 |
| LOYSEW | S77AM145 |
| LOYSEW | S77AM182 |
| LOYSEW | S77AM184 |
| LOYSEW | S77AM213/215 |
| LOYSEW | SF77AM56 |
| LOYSEW | SF77AM143 |
| LOYSEW | SF77AM145 |
| LOYSEW | SF77AM182 |
| LOYSEW | SF77AM184 |
| LOYSEW | SF77AM213/215 |
| LOYSEW | SAF77AM56 |
| LOYSEW | SAF77AM143 |
| LOYSEW | SAF77AM145 |
| LOYSEW | SAF77AM182 |
| LOYSEW | SAF77AM184 |
| LOYSEW | SAF77AM213/215 |
| LOYSEW | SHF77AM56 |
| LOYSEW | SHF77AM143 |
| LOYSEW | SHF77AM145 |
| LOYSEW | SHF77AM182 |
| LOYSEW | SHF77AM184 |
| LOYSEW | SHF77AM213/215 |
| LOYSEW | SA77AM56 |
| LOYSEW | SA77AM143 |
| LOYSEW | SA77AM145 |
| LOYSEW | SA77AM182 |
| LOYSEW | SA77AM184 |
| LOYSEW | SA77AM213/215 |
| LOYSEW | SH77AM56 |
| LOYSEW | SH77AM143 |
| LOYSEW | SH77AM145 |
| LOYSEW | SH77AM182 |
| LOYSEW | SH77AM184 |
| LOYSEW | SH77AM213/215 |
| LOYSEW | SAZ77AM56 |
| LOYSEW | SAZ77AM143 |
| LOYSEW | SAZ77AM145 |
| LOYSEW | SAZ77AM182 |
| LOYSEW | SAZ77AM184 |
| LOYSEW | SAZ77AM213/215 |
| LOYSEW | SHZ77AM56 |
| LOYSEW | SHZ77AM143 |
| LOYSEW | SHZ77AM145 |
| LOYSEW | SHZ77AM182 |
| LOYSEW | SHZ77AM184 |
| LOYSEW | SHZ77AM213/215 |
| LOYSEW | ST77AM56 |
| LOYSEW | ST77AM143 |
| LOYSEW | ST77AM145 |
| LOYSEW | ST77AM182 |
| LOYSEW | ST77AM184 |
| LOYSEW | ST77AM213/215 |
| LOYSEW | S87AM143 |
| LOYSEW | S87AM145 |
| LOYSEW | S87AM182 |
| LOYSEW | S87AM184 |
| LOYSEW | S87AM213/215 |
| LOYSEW | S87AM254/256 |
| LOYSEW | S87AM284/286 |
| LOYSEW | SF87AM143 |
| LOYSEW | SF87AM145 |
| LOYSEW | SF87AM182 |
| LOYSEW | SF87AM184 |
| LOYSEW | SF87AM213/215 |
| LOYSEW | SF87AM254/256 |
| LOYSEW | SF87AM284/286 |
| LOYSEW | SAF87AM143 |
| LOYSEW | SAF87AM145 |
| LOYSEW | SAF87AM182 |
| LOYSEW | SAF87AM184 |
| LOYSEW | SAF87AM213/215 |
| LOYSEW | SAF87AM254/256 |
| LOYSEW | SAF87AM284/286 |
| LOYSEW | SHF87AM143 |
| LOYSEW | SHF87AM145 |
| LOYSEW | SHF87AM182 |
| LOYSEW | SHF87AM184 |
| LOYSEW | SHF87AM213/215 |
| LOYSEW | SHF87AM254/256 |
| LOYSEW | SHF87AM284/286 |
| LOYSEW | SA87AM143 |
| LOYSEW | SA87AM145 |
| LOYSEW | SA87AM182 |
| LOYSEW | SA87AM184 |
| LOYSEW | SA87AM213/215 |
| LOYSEW | SA87AM254/256 |
| LOYSEW | SA87AM284/286 |
| LOYSEW | SA87AM143 |
| LOYSEW | SA87AM145 |
| LOYSEW | SA87AM182 |
| LOYSEW | SA87AM184 |
| LOYSEW | SA87AM213/215 |
| LOYSEW | SA87AM254/256 |
| LOYSEW | SA87AM284/286 |
| LOYSEW | SAZ87AM143 |
| LOYSEW | SAZ87AM145 |
| LOYSEW | SAZ87AM182 |
| LOYSEW | SAZ87AM184 |
| LOYSEW | SAZ87AM213/215 |
| LOYSEW | SAZ87AM254/256 |
| LOYSEW | SAZ87AM284/286 |
| LOYSEW | SHZ87AM143 |
| LOYSEW | SHZ87AM145 |
| LOYSEW | SHZ87AM182 |
| LOYSEW | SHZ87AM184 |
| LOYSEW | SHZ87AM213/215 |
| LOYSEW | SHZ87AM254/256 |
| LOYSEW | SHZ87AM284/286 |
| LOYSEW | ST87AM143 |
| LOYSEW | ST87AM145 |
| LOYSEW | ST87AM182 |
| LOYSEW | ST87AM184 |
| LOYSEW | ST87AM213/215 |
| LOYSEW | ST87AM254/256 |
| LOYSEW | ST87AM284/286 |
| LOYSEW | S97AM182 |
| LOYSEW | S97AM184 |
| LOYSEW | S97AM213/215 |
| LOYSEW | S97AM254/256 |
| LOYSEW | S97AM284/286 |
| LOYSEW | S97AM324/326 |
| LOYSEW | S97AM364/365 |
| LOYSEW | SF97AM182 |
| LOYSEW | SF97AM184 |
| LOYSEW | SF97AM213/215 |
| LOYSEW | SF97AM254/256 |
| LOYSEW | SF97AM284/286 |
| LOYSEW | SF97AM324/326 |
| LOYSEW | SF97AM364/365 |
| LOYSEW | SAF97AM182 |
| LOYSEW | SAF97AM184 |
| LOYSEW | SAF97AM213/215 |
| LOYSEW | SAF97AM254/256 |
| LOYSEW | SAF97AM284/286 |
| LOYSEW | SAF97AM324/326 |
| LOYSEW | SAF97AM364/365 |
| LOYSEW | SHF97AM182 |
| LOYSEW | SHF97AM184 |
| LOYSEW | SHF97AM213/215 |
| LOYSEW | SHF97AM254/256 |
| LOYSEW | SHF97AM284/286 |
| LOYSEW | SHF97AM324/326 |
| LOYSEW | SHF97AM364/365 |
| LOYSEW | SA97AM182 |
| LOYSEW | SA97AM184 |
| LOYSEW | SA97AM213/215 |
| LOYSEW | SA97AM254/256 |
| LOYSEW | SA97AM284/286 |
| LOYSEW | SA97AM324/326 |
| LOYSEW | SA97AM364/365 |
| LOYSEW | SH97AM182 |
| LOYSEW | SH97AM184 |
| LOYSEW | SH97AM213/215 |
| LOYSEW | SH97AM254/256 |
| LOYSEW | SH97AM284/286 |
| LOYSEW | SH97AM324/326 |
| LOYSEW | SH97AM364/365 |
| LOYSEW | SAZ97AM182 |
| LOYSEW | SAZ97AM184 |
| LOYSEW | SAZ97AM213/215 |
| LOYSEW | SAZ97AM254/256 |
| LOYSEW | SAZ97AM284/286 |
| LOYSEW | SAZ97AM324/326 |
| LOYSEW | SAZ97AM364/365 |
| LOYSEW | SHZ97AM182 |
| LOYSEW | SHZ97AM184 |
| LOYSEW | SHZ97AM213/215 |
| LOYSEW | SHZ97AM254/256 |
| LOYSEW | SHZ97AM284/286 |
| LOYSEW | SHZ97AM324/326 |
| LOYSEW | SHZ97AM364/365 |
| LOYSEW | ST97AM182 |
| LOYSEW | ST97AM184 |
| LOYSEW | ST97AM213/215 |
| LOYSEW | ST97AM254/256 |
| LOYSEW | ST97AM284/286 |
| LOYSEW | ST97AM324/326 |
| LOYSEW | ST97AM364/365 |
| LOYSEW | S..37AM63 |
| LOYSEW | S..37AM71 |
| LOYSEW | S..37AM80 |
| LOYSEW | S..37AM90 |
| LOYSEW | S..47AM63 |
| LOYSEW | S..47AM71 |
| LOYSEW | S..47AM80 |
| LOYSEW | S..47AM90 |
| LOYSEW | S..57AM63 |
| LOYSEW | S..57AM71 |
| LOYSEW | S..57AM80 |
| LOYSEW | S..57AM90 |
| LOYSEW | S..67AM63 |
| LOYSEW | S..67AM71 |
| LOYSEW | S..67AM80 |
| LOYSEW | S..67AM90 |
| LOYSEW | S..67AM100 |
| LOYSEW | S..67AM112 |
| LOYSEW | S..67AM132S/M |
| LOYSEW | S..77AM63 |
| LOYSEW | S..77AM71 |
| LOYSEW | S..77AM80 |
| LOYSEW | S..77AM90 |
| LOYSEW | S..77AM100 |
| LOYSEW | S..77AM112 |
| LOYSEW | S..77AM132S/M |
| LOYSEW | S..77AM132ML |
| LOYSEW | S..87AM80 |
| LOYSEW | S..87AM90 |
| LOYSEW | S..87AM100 |
| LOYSEW | S..87AM112 |
| LOYSEW | S..87AM132S/M |
| LOYSEW | S..87AM132ML |
| LOYSEW | S..87AM160 |
| LOYSEW | S..87AM180 |
| LOYSEW | S..97AM100 |
| LOYSEW | S..97AM112 |
| LOYSEW | S..97AM132S/M |
| LOYSEW | S..97AM132ML |
| LOYSEW | S..97AM160 |
| LOYSEW | S..97AM180 |
| LOYSEW | S..97AM200 |
| LOYSEW | S..67R37 |
| LOYSEW | S..77R37 |
| LOYSEW | S..87R57 |
| LOYSEW | S..97R57 |
| LOYSEW | S..37AD1 |
| LOYSEW | S..37AD2 |
| LOYSEW | S..47AD1 |
| LOYSEW | S..47AD2 |
| LOYSEW | S..57AD1 |
| LOYSEW | S..57AD2 |
| LOYSEW | S..67AD2 |
| LOYSEW | S..67AD3 |
| LOYSEW | S..77AD2 |
| LOYSEW | S..77AD3 |
| LOYSEW | S..77AD4 |
| LOYSEW | S..87AD2 |
| LOYSEW | S..87AD3 |
| LOYSEW | S..87AD4 |
| LOYSEW | S..87AD5 |
| LOYSEW | S..97AD3 |
| LOYSEW | S..97AD4 |
| LOYSEW | S..97AD5 |
| LOYSEW | S..97AD6 |
| LOYSEW | S..37AD1 |
| LOYSEW | S..37AD2,AD2/ZR |
| LOYSEW | S..47AD1 |
| LOYSEW | S..47AD2,AD2/ZR |
| LOYSEW | S..57AD1 |
| LOYSEW | S..57AD2,AD2/ZR |
| LOYSEW | S..67AD2,AD2/ZR |
| LOYSEW | S..67AD3,AD3/ZR |
| LOYSEW | S..77AD2,AD2/ZR |
| LOYSEW | S..77AD3,AD3/ZR |
| LOYSEW | S..77AD4,AD4/ZR |
| LOYSEW | S..87AD2,AD2/ZR |
| LOYSEW | S..87AD3,AD3/ZR |
| LOYSEW | S..87AD4,AD4/ZR |
| LOYSEW | S..87AD5,AD5/ZR |
| LOYSEW | S..97AD3,AD3/ZR |
| LOYSEW | S..97AD4,AD4/ZR |
| LOYSEW | S..97AD5,AD5/ZR |
| LOYSEW | S..97AD6,AD6/ZR |
| LOYSEW | S..67R37 |
| LOYSEW | S..77R37 |
| LOYSEW | S..87R57 |
| LOYSEW | S..97R57 |
| LOYSEW | S..37AD2/P |
| LOYSEW | S..47AD2/P |
| LOYSEW | S..57AD2/P |
| LOYSEW | S..67AD2/P |
| LOYSEW | S..67AD3/P |
| LOYSEW | S..77AD2/P |
| LOYSEW | S..77AD3/P |
| LOYSEW | S..77AD4/P |
| LOYSEW | S..87AD2/P |
| LOYSEW | S..87AD3/P |
| LOYSEW | S..87AD4/P |
| LOYSEW | S..87AD5/P |
| LOYSEW | S..97AD3/P |
| LOYSEW | S..97AD4/P |
| LOYSEW | S..97AD5/P |
| LOYSEW | S..37AR71 |
| LOYSEW | S..37AR80 |
| LOYSEW | S..37AR90 |
| LOYSEW | S..47AR71 |
| LOYSEW | S..47AR80 |
| LOYSEW | S..47AR90 |
| LOYSEW | S..57AR71 |
| LOYSEW | S..57AR80 |
| LOYSEW | S..57AR90 |
| LOYSEW | S..67AR71 |
| LOYSEW | S..67AR80 |
| LOYSEW | S..67AR90 |
| LOYSEW | S..67AR100 |
| LOYSEW | S..67AR112 |
| LOYSEW | S..77AR71 |
| LOYSEW | S..77AR80 |
| LOYSEW | S..77AR90 |
| LOYSEW | S..77AR100 |
| LOYSEW | S..77AR112 |
| LOYSEW | S..77AR132S/M |
| LOYSEW | S..77AR132ML |
| LOYSEW | S..87AR80 |
| LOYSEW | S..87AR90 |
| LOYSEW | S..87AR100 |
| LOYSEW | S..87AR112 |
| LOYSEW | S..87AR132S/M |
| LOYSEW | S..87AR132ML |
| LOYSEW | S..87AR160 |
| LOYSEW | S..87AR180 |
| LOYSEW | S..97AR100 |
| LOYSEW | S..97AR112 |
| LOYSEW | S..97AR132S/M |
| LOYSEW | S..97AR132ML |
| LOYSEW | S..97AR160 |
| LOYSEW | S..97AR180 |
| LOYSEW | W37 AD.. |
| LOYSEW | W47 AD.. |
| LOYSEW | W37AM56 |
| LOYSEW | W37AM143 |
| LOYSEW | W37AM145 |
| LOYSEW | WA37BAM56 |
| LOYSEW | WA37BAM143 |
| LOYSEW | WA37BAM145 |
| LOYSEW | WH37BAM56 |
| LOYSEW | WH37BAM143 |
| LOYSEW | WH37BAM145 |
| LOYSEW | WF37AM56 |
| LOYSEW | WF37AM143 |
| LOYSEW | WF37AM145 |
| LOYSEW | WAF37AM56 |
| LOYSEW | WAF37AM143 |
| LOYSEW | WAF37AM145 |
| LOYSEW | WHF37AM56 |
| LOYSEW | WHF37AM143 |
| LOYSEW | WHF37AM145 |
| LOYSEW | WA37AM56 |
| LOYSEW | WA37AM143 |
| LOYSEW | WA37AM145 |
| LOYSEW | WH37AM56 |
| LOYSEW | WH37AM143 |
| LOYSEW | WH37AM145 |
| LOYSEW | WT37AM56 |
| LOYSEW | WT37AM143 |
| LOYSEW | WT37AM145 |
| LOYSEW | W47AM56 |
| LOYSEW | W47AM143 |
| LOYSEW | W47AM145 |
| LOYSEW | W47AM182 |
| LOYSEW | W47AM184 |
| LOYSEW | WA47BAM56 |
| LOYSEW | WA47BAM143 |
| LOYSEW | WA47BAM145 |
| LOYSEW | WA47BAM182 |
| LOYSEW | WA47BAM184 |
| LOYSEW | WH47BAM56 |
| LOYSEW | WH47BAM143 |
| LOYSEW | WH47BAM145 |
| LOYSEW | WH47BAM182 |
| LOYSEW | WH47BAM184 |
| LOYSEW | WF47AM56 |
| LOYSEW | WF47AM143 |
| LOYSEW | WF47AM145 |
| LOYSEW | WF47AM182 |
| LOYSEW | WF47AM184 |
| LOYSEW | WAF47AM56 |
| LOYSEW | WAF47AM143 |
| LOYSEW | WAF47AM145 |
| LOYSEW | WAF47AM182 |
| LOYSEW | WAF47AM184 |
| LOYSEW | WHF47AM56 |
| LOYSEW | WHF47AM143 |
| LOYSEW | WHF47AM145 |
| LOYSEW | WHF47AM182 |
| LOYSEW | WHF47AM184 |
| LOYSEW | WA47AM56 |
| LOYSEW | WA47AM143 |
| LOYSEW | WA47AM145 |
| LOYSEW | WA47AM182 |
| LOYSEW | WA47AM184 |
| LOYSEW | WH47AM56 |
| LOYSEW | WH47AM143 |
| LOYSEW | WH47AM145 |
| LOYSEW | WH47AM182 |
| LOYSEW | WH47AM184 |
| LOYSEW | WT47AM56 |
| LOYSEW | WT47AM143 |
| LOYSEW | WT47AM145 |
| LOYSEW | WT47AM182 |
| LOYSEW | WT47AM184 |
| LOYSEW | W..37AM63 |
| LOYSEW | W..37AM71 |
| LOYSEW | W..37AM80 |
| LOYSEW | W..37AM90 |
| LOYSEW | W..47AM63 |
| LOYSEW | W..47AM71 |
| LOYSEW | W..47AM80 |
| LOYSEW | W..47AM90 |
| LOYSEW | W..47AM100 |
| LOYSEW | W..47AM112 |
| LOYSEW | W..47AM132S/M |
| LOYSEW | W..37AD1 |
| LOYSEW | W..37AD2 |
| LOYSEW | W..47AD2 |
| LOYSEW | W..47AD3 |
| LOYSEW | W..37AR71 |
| LOYSEW | W..37AR80 |
| LOYSEW | W..37AR90 |
| LOYSEW | W..47AR71 |
| LOYSEW | W..47AR80 |
| LOYSEW | W..47AR90 |
FAQ
—Why do you choose LOYAL?
LOYAL is a very professional supplier of replacement parts for piston pumps, motors, concrete pump spare parts, gearbox, cylinders, gear pumps and so on
LOYALmajor technicians have 20 years experience. We are not only supplying products to you, but also providing you
benefits and useful suggestion about goods maintenance.
—How about quality of products from LOYAL?
We always pay more attention about quality of our goods from raw material to machining, especially heat treatment to control our quality and precision parts, 100% interchangeable with origins. Stable temperature and enough time heat treatment are strictly controlled by our suppliers to make parts durable.
Warranty: 1 year
—What about delivery and service from LOYAL?
We offer all customers quick response about all inquiries every time. We stock plenty of spare parts, hydraulic pumps and hydraulic motors. If products you demanded in stock, we can delivery in 3 working days after your payment.
In case the products you needed are not in current stock, we can prepare in 2-4 weeks after your payment for hydraulic cylinders, gearbox and gear pumps, in 3-7 days for new hydraulic pumps,hydraulic motors, in 15-20 days for rebuilt hydraulic pumps,hydraulic motors.
/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
| Application: | Machinery, Marine, Agricultural Machinery |
|---|---|
| Hardness: | Hardened Tooth Surface |
| Installation: | Horizontal Type |
| Layout: | Expansion |
| Gear Shape: | Conical – Cylindrical Gear |
| Step: | Three-Step |
| Samples: |
US$ 1800/Piece
1 Piece(Min.Order) | |
|---|
| Customization: |
Available
| Customized Request |
|---|

Smooth and Controlled Movement in Industrial Robots with Planetary Gearboxes
Planetary gearboxes play a crucial role in ensuring smooth and controlled movement in industrial robots, enhancing their precision and performance:
Reduced Backlash: Planetary gearboxes are designed to minimize backlash, which is the amount of play or free movement between gear teeth. This reduction in backlash results in precise and accurate motion control, allowing industrial robots to achieve precise positioning and repeatability.
High Gear Reduction Ratios: Planetary gearboxes offer high gear reduction ratios, allowing the robot’s motor to output higher torque while maintaining lower speed. This capability enables robots to handle heavy loads and perform tasks that require fine adjustments and delicate movements.
Compact Design: The compact and lightweight design of planetary gearboxes allows for their integration into the limited space of industrial robot joints and actuators. This compactness is crucial for maintaining the overall efficiency and agility of the robot’s movements.
Multi-Speed Capabilities: Planetary gearboxes can be designed with multiple gear stages, allowing industrial robots to operate at different speeds as needed for various tasks. This flexibility in speed selection enhances the robot’s versatility in performing tasks of varying complexities.
High Efficiency: Planetary gearboxes are known for their high efficiency, which translates to minimal energy loss during gear transmission. This efficiency ensures that the robot’s movements are smooth and consistent while optimizing energy consumption.
Torque Distribution: The arrangement of planetary gears allows for efficient distribution of torque across multiple gear stages. This feature ensures that the robot’s joints and actuators receive the appropriate amount of torque for controlled movement, even when handling varying loads.
Seamless Integration: Planetary gearboxes are designed to be easily integrated with servo motors and other robotic components. This seamless integration ensures that the gearbox’s performance is harmoniously aligned with the overall robotic system.
Precision and Accuracy: By providing precise gear reduction and motion control, planetary gearboxes enable industrial robots to perform tasks that demand high levels of precision and accuracy, such as assembly, welding, painting, and intricate material handling.
Reduced Vibrations: The reduced backlash and smooth gear engagement in planetary gearboxes contribute to minimized vibrations during robot operation. This results in quieter and more stable robot movements, further enhancing their performance and user experience.
Dynamic Load Handling: Planetary gearboxes can handle dynamic loads that may change during robot operation. Their ability to manage varying loads while maintaining controlled movement is essential for safe and reliable robot performance.
In summary, planetary gearboxes ensure smooth and controlled movement in industrial robots by minimizing backlash, offering high gear reduction ratios, providing a compact design, enabling multi-speed capabilities, maintaining high efficiency, distributing torque effectively, seamlessly integrating with robotic systems, enhancing precision and accuracy, reducing vibrations, and enabling dynamic load handling. These features collectively contribute to the precise and optimized motion of industrial robots in various applications and industries.

Differences Between Inline and Right-Angle Planetary Gearbox Configurations
Inline and right-angle planetary gearbox configurations are two common designs with distinct characteristics suited for various applications. Here’s a comparison of these configurations:
Inline Planetary Gearbox:
- Configuration: In an inline configuration, the input and output shafts are aligned along the same axis. The sun gear, planetary gears, and ring gear are typically arranged in a straight line.
- Compactness: Inline gearboxes are more compact and have a smaller footprint, making them suitable for applications with limited space.
- Efficiency: Inline configurations tend to have slightly higher efficiency due to the direct alignment of components.
- Output Speed and Torque: Inline gearboxes are better suited for applications that require higher output speeds and lower torque.
- Applications: They are commonly used in robotics, conveyors, printing machines, and other applications where space is a consideration.
Right-Angle Planetary Gearbox:
- Configuration: In a right-angle configuration, the input and output shafts are oriented at a 90-degree angle to each other. This allows for a change in direction of power transmission.
- Space Flexibility: Right-angle gearboxes offer flexibility in arranging components, making them suitable for applications that require changes in direction or where space constraints prevent a straight-line configuration.
- Torque Capacity: Right-angle configurations can handle higher torque loads due to the increased surface area of gear engagement.
- Applications: They are often used in cranes, elevators, conveyor systems, and applications requiring a change in direction.
- Efficiency: Right-angle configurations may have slightly lower efficiency due to increased gear meshing complexity and potential for additional losses.
Choosing between inline and right-angle configurations depends on factors such as available space, required torque and speed, and the need for changes in power transmission direction. Each configuration offers distinct advantages based on the specific needs of the application.

Common Applications and Industries of Planetary Gearboxes
Planetary gearboxes are widely utilized across various industries and applications due to their unique design and performance characteristics. Some common applications and industries where planetary gearboxes are commonly used include:
- Automotive Industry: Planetary gearboxes are found in automatic transmissions, hybrid vehicle systems, and powertrains. They provide efficient torque conversion and variable gear ratios.
- Robotics: Planetary gearboxes are used in robotic joints and manipulators, providing compact and high-torque solutions for precise movement.
- Industrial Machinery: They are employed in conveyors, cranes, pumps, mixers, and various heavy-duty machinery where high torque and compact design are essential.
- Aerospace: Aerospace applications include aircraft actuation systems, landing gear mechanisms, and satellite deployment mechanisms.
- Material Handling: Planetary gearboxes are used in equipment like forklifts and pallet jacks to provide controlled movement and high lifting capabilities.
- Renewable Energy: Wind turbines use planetary gearboxes to convert low-speed, high-torque rotational motion of the blades into higher-speed rotational motion for power generation.
- Medical Devices: Planetary gearboxes find applications in medical imaging equipment, prosthetics, and surgical robots for precise and controlled motion.
- Mining and Construction: Planetary gearboxes are used in heavy equipment like excavators, loaders, and bulldozers to handle heavy loads and provide controlled movement.
- Marine Industry: They are employed in marine propulsion systems, winches, and steering mechanisms, benefiting from their compact design and high torque capabilities.
The versatility of planetary gearboxes makes them suitable for applications that require compact size, high torque density, and efficient power transmission. Their ability to handle varying torque loads, offer high gear ratios, and maintain consistent performance has led to their widespread adoption across numerous industries.


editor by CX 2024-05-13
China Best Sales ZD Change Drive Torque Machine Motor Planetary Gearbox with Wide Versatility differential gearbox
Product Description
Model Selection
Planetar y gearbox is a kind of reducer with wide versatility. The inner gear adopts low carbon alloy steel carburizing quenching and grinding or nitriding process. Planetary gearbox has the characteristics of small structure size, large output torque, high speed ratio, high efficiency, safe and reliable performance, etc. The inner gear of the planetary gearbox can be divided into spur gear and helical gear.
• Model Selection
Our professional sales representive and technical team will choose the right model and transmission solutions for your usage depend on your specific parameters.
• Drawing Request
If you need more product parameters, catalogues, CAD or 3D drawings, please contact us.
• On Your Need
We can modify standard products or customize them to meet your specific needs.
Range Of Planetary Gearbox
Other Products
Company Profile
/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
| Application: | Motor, Machinery, Marine, Agricultural Machinery |
|---|---|
| Function: | Change Drive Torque, Speed Changing, Speed Reduction |
| Hardness: | Hardened Tooth Surface |
| Installation: | Vertical Type |
| Type: | Planetary Gear Box |
| Size: | 60mm-160mm |
| Samples: |
US$ 100/Piece
1 Piece(Min.Order) | |
|---|
| Customization: |
Available
| Customized Request |
|---|

Concept of Coaxial and Parallel Shaft Arrangements in Planetary Gearboxes
In planetary gearboxes, the arrangement of shafts plays a crucial role in determining the gearbox’s overall structure and functionality. The two common shaft arrangements are coaxial and parallel configurations:
Coaxial Shaft Arrangement: In a coaxial arrangement, the input shaft and output shaft are positioned along the same axis, resulting in a compact and streamlined design. The planetary gears and other components are aligned concentrically around the central axis, allowing for efficient power transmission and reduced space requirements. Coaxial planetary gearboxes are commonly used in applications where space is limited, and a compact form factor is essential. They are often employed in robotics, automotive systems, and aerospace mechanisms.
Parallel Shaft Arrangement: In a parallel arrangement, the input and output shafts are positioned parallel to each other but on different axes. The planetary gears are aligned in a way that allows the power to be transmitted from the input shaft to the output shaft via a combination of meshing gears. This arrangement allows for a larger gear diameter and higher torque transmission capabilities. Parallel planetary gearboxes are often used in applications requiring high torque and heavy-duty performance, such as industrial machinery, construction equipment, and material handling systems.
The choice between coaxial and parallel shaft arrangements depends on the specific requirements of the application. Coaxial configurations are favored for compactness and efficient power transmission, while parallel configurations excel in handling higher torque and heavy loads. Both arrangements offer distinct advantages and are chosen based on factors like available space, torque demands, load characteristics, and overall system design.

Signs of Wear or Damage in Planetary Gearboxes and Recommended Service
Planetary gearboxes, like any mechanical component, can exhibit signs of wear or damage over time. Recognizing these signs is crucial for timely maintenance to prevent further issues. Here are some common signs of wear or damage in planetary gearboxes:
1. Unusual Noise: Excessive noise, grinding, or whining sounds during operation can indicate worn or misaligned gear teeth. Unusual noise is often a clear indicator that something is wrong within the gearbox.
2. Increased Vibration: Excessive vibration or shaking during operation can result from misalignment, damaged bearings, or worn gears. Vibration can lead to further damage if not addressed promptly.
3. Gear Tooth Wear: Inspect gear teeth for signs of wear, pitting, or chipping. These issues can result from improper lubrication, overload, or other operational factors. Damaged gear teeth can affect the gearbox’s efficiency and performance.
4. Oil Leakage: Leakage of gearbox oil or lubricant can indicate a faulty seal or gasket. Oil leakage not only leads to reduced lubrication but can also cause environmental contamination and further damage to the gearbox components.
5. Temperature Increase: A significant rise in operating temperature can suggest increased friction due to wear or inadequate lubrication. Monitoring temperature changes can help identify potential issues early.
6. Reduced Efficiency: If you notice a decrease in performance, such as decreased torque output or inconsistent speed, it could indicate internal damage to the gearbox components.
7. Abnormal Gear Ratios: If the output speed or torque does not match the expected gear ratio, it could be due to gear wear, misalignment, or other issues affecting the gear engagement.
8. Frequent Maintenance Intervals: If you find that you need to service the gearbox more frequently than usual, it could be a sign that the gearbox is experiencing excessive wear or damage.
When to Service: If any of the above signs are observed, it’s important to address them promptly. Regular maintenance checks are also recommended to detect potential issues early and prevent more significant problems. Scheduled maintenance should include inspections, lubrication checks, and replacement of worn or damaged components.
It’s advisable to consult the gearbox manufacturer’s guidelines for recommended service intervals and practices. Regular maintenance can extend the lifespan of the planetary gearbox and ensure it continues to operate efficiently and reliably.

Factors to Consider When Selecting a Planetary Gearbox
Choosing the right planetary gearbox for a specific application involves considering various factors to ensure optimal performance and compatibility. Here are the key factors to keep in mind:
- Load Requirements: Determine the torque and speed requirements of your application. Planetary gearboxes offer different torque and speed ratios, so selecting the appropriate gearbox with the right load capacity is crucial.
- Ratio: Evaluate the gear reduction ratio needed to achieve the desired output speed and torque. Planetary gearboxes come in various gear ratios, allowing you to customize the output characteristics.
- Efficiency: Consider the gearbox’s efficiency, as it affects energy consumption and heat generation. Higher efficiency gearboxes minimize power losses during transmission.
- Size and Compactness: Planetary gearboxes are known for their compact size, but it’s essential to choose a size that fits within the available space while meeting performance requirements.
- Mounting Configuration: Determine how the gearbox will be mounted in your application. Planetary gearboxes can have different mounting options, including flange, shaft, or foot mountings.
- Input and Output Types: Select the appropriate input and output shaft configurations, such as male, female, keyed, splined, or hollow shafts, to ensure compatibility with your equipment.
- Environment: Consider the operating environment, including temperature, humidity, dust, and potential exposure to chemicals. Choose a gearbox with appropriate seals and materials to withstand the conditions.
- Accuracy: Some applications require precise motion control. If accuracy is essential, choose a gearbox with minimal backlash and high gear mesh quality.
- Service Life and Reliability: Evaluate the gearbox’s expected service life and reliability based on the manufacturer’s specifications. Choose a reputable manufacturer known for producing reliable products.
- Backlash: Backlash is the play between gears that can affect positioning accuracy. Depending on your application, you might need a gearbox with low backlash or a method to compensate for it.
- Budget: Consider your budget constraints while balancing performance requirements. Sometimes, investing in a higher-quality gearbox upfront can lead to long-term cost savings through reduced maintenance and downtime.
By carefully considering these factors and consulting with gearbox manufacturers or experts, you can select a planetary gearbox that best meets the unique demands of your application.


editor by CX 2024-05-10
China best Chinese Manufacture Industrial Km Series Hypoid Drive Gearbox with Hot selling
Product Description
|
item |
value |
|
Warranty |
1 year |
|
Applicable Industries |
Manufacturing Plant, Construction works , Energy & Mining, Other |
|
Customized support |
OEM |
|
Place of CZPT |
ZheJiang , China |
|
Input speed |
750-1500rpm |
|
Ratio |
7.5 10 12.5 |
|
Material |
Aluminum |
|
Product name |
KM Series Hypoid Gear Reducer |
|
MOQ |
10pcs |
|
Color |
Customization |
PRODUCTS CHARACTERISTICS
1. Mad of high-quality aluminum alloy,light weight and non-rusting
2. Large output torque
3. Smooth in running and low in noise,can work long time in dreadful conditions.
4. High in radiating efficiency.
5. Good-looking in appearance,durable in service life and small in volume.
6. Suitable for omnibearing installation.
FAQ
Q1:Are you a manufacturer or trading company?
Yes, We are a leading manufacturer specialized in production of various kinds of small and medium-sized
motor.
Q2:How to choose a gearbox which meets our requirement?
You can refer to our catalogue to choose the gearbox or we can help to choose when you provide
the technical information of required output torque, output speed and motor parameter etc.
Q3:What information shall we give before placing a purchase order?
a) Type of the gearbox, ratio, input and output type, input flange, mounting position, and motor information etc.
b) Housing color.
c) Purchase quantity.
d) Other special requirements.
Q4:What industries are your gearboxes being used?
Our gearboxes are widely used in the areas of textile, food processing, beverage, chemical industry, escalator,automatic storage equipment, metallurgy, tabacco, environmental protection, logistics and etc.
Q5:How about your delivery time?
For micro brush dc gear motor, the sample delivery time is 2-5 days, bulk delivery time is about 15-20 days, depends on the order qty. For brushless dc motor, the sample deliver time is about 10-15 days; bulk time is 15-20 days.Please take the sales confirmation for final reference.
Q6:What’s your warranty terms?
One year
/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
| Application: | Motor, Electric Cars, Motorcycle, Machinery, Marine, Agricultural Machinery, Car |
|---|---|
| Function: | Distribution Power, Clutch, Change Drive Torque, Change Drive Direction, Speed Changing, Speed Reduction, Speed Increase |
| Layout: | as for Request |
| Hardness: | Hardened Tooth Surface |
| Installation: | as for Request |
| Step: | as for Request |
| Samples: |
US$ 50/Piece
1 Piece(Min.Order) | |
|---|
| Customization: |
Available
| Customized Request |
|---|

Planetary Gearbox Advantages and Disadvantages
A planetary gearbox is a type of mechanical drive with a single output shaft. They are suitable for both clockwise and counterclockwise rotations, have less inertia, and operate at higher speeds. Here are some advantages and disadvantages of this type of gearbox. Let us see what these advantages are and why you should use them in your applications. Listed below are some of the benefits of planetary gearboxes.
Suitable for counterclockwise and clockwise rotation
If you want to teach children about the clock hands, you can buy some resources for counterclockwise and asymmetrical rotation. These resources include worksheets for identifying degrees of rotation, writing rules for rotation, and visual processing. You can also use these resources to teach angles. For example, the translation of shapes activity pack helps children learn about the rotation of geometric shapes. Similarly, the visual perception activity sheet helps children understand how to process information visually.
Various studies have been done to understand the anatomical substrate of rotations. In a recent study, CZPT et al. compared the position of the transitional zone electrocardiographically and anatomically. The authors found that the transitional zone was normal in nine of 33 subjects, indicating that rotation is not a sign of disease. Similarly, a counterclockwise rotation may be caused by a genetic or environmental factor.
The core tip data should be designed to work in both clockwise and counterclockwise rotation. Counterclockwise rotation requires a different starting point than a clockwise rotation. In North America, star-delta starting is used. In both cases, the figure is rotated about its point. Counterclockwise rotation, on the other hand, is done in the opposite direction. In addition, it is possible to create counterclockwise rotation using the same gimbal.
Despite its name, both clockwise and counterclockwise rotation requires a certain amount of force to rotate. When rotating clockwise, the object faces upwards. Counterclockwise rotation, on the other hand, starts from the top position and heads to the right. If rotating in the opposite direction, the object turns counterclockwise, and vice versa. The clockwise movement, in contrast, is the reverse of counterclockwise rotation.
Has less inertia
The primary difference between a planetary gearbox and a normal pinion-and-gear reducer is the ratio. A planetary gearbox will produce less inertia, which is an important advantage because it will reduce torque and energy requirements. The ratio of the planetary gearbox to its fixed axis counterpart is a factor of three. A planetary gearbox has smaller gears than a conventional planetary, so its inertia is proportional to the number of planets.
Planetary gears are less inertia than spur gears, and they share the load across multiple gear teeth. This means that they will have low backlash, and this is essential for applications with high start-stop cycles and frequent rotational direction changes. Another benefit is the high stiffness. A planetary gearbox will have less backlash than a spur gearbox, which means that it will be more reliable.
A planetary gearbox can use either spur or helical gears. The former provides higher torque ratings while the latter has less noise and stiffness. Both types of gears are useful in motorsports, aerospace, truck transmissions, and power generation units. They require more assembly time than a conventional parallel shaft gear, but the PD series is the more efficient alternative. PD series planetary gears are suitable for many applications, including servo and robotics.
In contrast, a planetary gear set can have varying input speed. This can affect the frequency response of the gearset. A mathematical model of the two-stage planetary gears has non-stationary effects and correlates with experimental findings. Fig. 6.3 shows an addendum. The dedendum’s minimum value is approximately 1.25m. When the dedendum is at its smallest, the dedendum has less inertia.
Offers greater reliability
The Planetary Gearbox is a better option for driving a vehicle than a standard spur gearbox. A planetary gearbox is less expensive, and they have better backlash, higher load capacity, and greater shock loads. Unlike spur gearboxes, however, mechanical noise is virtually nonexistent. This makes them more reliable in high-shock situations, as well as in a wide range of applications.
The Economy Series has the same power density and torque capacity of the Precision Helical Series, but it lacks the precision of the latter. In contrast, Economy Series planetary gearboxes feature straight spur planetary gearing, and they are used in applications requiring high torque. Both types of gearboxes are compatible with NEMA servo motors. If torque density is important, a planetary gearbox is the best choice.
The Dispersion of External Load: The SSI model has been extensively used to model the reliability of planetary gear systems. This model takes the contact force and fatigue strength of the system as generalized stress and strength. It also provides a theoretical framework to evaluate the reliability of planetary gear systems. It also has many other advantages that make it the preferred choice for high-stress applications. The Planetary Gearbox offers greater reliability and efficiency than traditional rack and pinion gear systems.
Planetary gearing has greater reliability and compact design. Its compact design allows for wider applications with concerns about space and weight. Additionally, the increased torque and reduction makes planetary gearboxes an excellent choice for a wide variety of applications. There are three major types of planetary gearboxes, each with its own advantages. This article describes a few of them. Once you understand their workings, you will be able to choose the best planetary gearbox for your needs.
Has higher operating speeds
When you look at planetary gearboxes, you might be confused about which one to choose. The primary issue is the application of the gearbox. You must also decide on secondary factors like noise level, corrosion resistance, construction, price, and availability worldwide. Some constructors work faster than others and deliver the gearboxes on the same day. However, the latter ones often deliver the planetary gearbox out of stock.
Compared to conventional gearboxes, a planetary gearbox can run at higher speeds when the input speed fluctuates. However, these gears are not very efficient in high-speed applications because of their increased noise levels. This makes planetary gears unsuitable for applications involving a great deal of noise. That is why most planetary gears are used in small-scale applications. There are some exceptions, but in general, a planetary gearbox is better suited for applications with higher operating speeds.
The basic planetary gearbox is a compact alternative to normal pinion-and-gear reducers. They can be used in a wide variety of applications where space and weight are concerns. Its efficiency is also higher, delivering 97% of the power input. It comes in three different types based on the performance. A planetary gearbox can also be classified as a worm gear, a spur gear, or a sprocket.
A planetary gearhead has a high-precision design and can generate substantial torque for their size. It also reduces backlash to two arc-min. Additionally, it is lubricated for life, which means no maintenance is needed. It can fit into a small machine envelope and has a small footprint. Moreover, the helical crowned gearing provides fast positioning. A sealed gearbox prevents abrasive dust from getting into the planetary gearhead.
Has drawbacks
The design of a planetary gearbox is compact and enables high torque and load capability in a small space. This gear arrangement also reduces the possibility of wear and tear. Planet gears are arranged in a planetary fashion, allowing gears to shift under load and a uniform distribution of torque. However, some disadvantages of planetary gears must be considered before investing in this gearbox.
While the planetary gearbox is a high precision motion-control device, its design and maintenance requirements are a concern. The bearing load is high, requiring frequent lubrication. Also, they are inaccessible. Despite these drawbacks, planetary gearboxes are suitable for a variety of tasks. They also have low backlash and high torsional stiffness, making them excellent choices for many applications.
As a result, the speed of a planetary gearbox varies with load and speed. At lower ratios, the sun gear becomes too large in relation to the planet gears. As the ratio increases, the sun gear will become too low, reducing torque. The planetary gears also reduce their torque in high-speed environments. Consequently, the ratio is a crucial consideration for planetary gearbox condition monitoring.
Excess drag may result from out-of-tolerance components or excessive lubrication. Drag should be measured both in directions and be within acceptable ranges. Grease and oil lubrication are two common planetary gearbox lubricants, but the choice is largely dependent on your application. While grease lubricates planetary gears well, oil needs maintenance and re-lubrication every few thousand hours.


editor by Dream 2024-05-09
China Standard High Precision AC 160 Series Automation Industrial Low Backlash CZPT Precision Reducers Gearboxes with Helical Gear application of planetary gearbox
Product Description
Company Profile
CCMS manufactures DC motors, AC motors, planetary gear motors, drum motors, planetary gearboxes, RV reducers and harmonic gearboxes, among others. Through technological innovation and customization, we help you create outstanding applications and provide flexible solutions for a wide range of industrial automation situations. We support custom machining and produce a wide range of parts.
Product Selection:
In the selection of products our sales team will help you find the most suitable products and corresponding solutions according to your needs.
Drawing Requirements:
We accept 2D, 3D drawings, and step files. We will produce according to your drawing requirements.
OEM&ODM Services:
We support the drawing processing and sample processing, providing high precision and high quality customized products is our survival.
Product Parameters
| Precision Bevel Teeth AB Series Technical Parameters | ||||||||
| Rated Output Torque | Nm | AB60 | AB90 | AB115 | AB142 | AB180 | Ratio | Section |
| 46 | 125 | 210 | 450 | 650 | 3 | 1 | ||
| 52 | 145 | 300 | 550 | 1250 | 4 | |||
| 55 | 155 | 320 | 650 | 1200 | 5 | |||
| 42 | 105 | 220 | 440 | 910 | 10 | |||
| 56 | 145 | 310 | 500 | 650 | 15 | 2 | ||
| 52 | 155 | 305 | 550 | 1200 | 25 | |||
| 55 | 155 | 320 | 650 | 1200 | 70 | |||
| 55 | 155 | 320 | 650 | 1200 | 100 | |||
Applications
Our products are widely used in mobile robots, logistics sorting, solar photovoltaic, semiconductor equipment, drive technology, machine tools, manufacturing machines, automation equipment, manipulators, wood processing machinery, paper equipment, medical equipment, aerospace industry, etc.
Our Advantages
1. High Precision: back gap is less than 5 arc minutes, accurate positioning.
2. The precision of the gear can be controlled below ISO4 level by using the top ultra-precision machine tool and the world’s leading tooth grinding.
3. The gear material is made of advanced low carbon alloy forged steel. After deed heat treatment, it can reach HRC60.
4. It can be adapted to any servo motor in the world.
5. Using synthetic grease, and adopt IP65 sealing design, no leakage and no maintenance.
6. The cage planetary support structure and the output shaft are integrated to achieve high stiffness and precision.
Relevant Products
Factory Showing
FAQ
Q: Who are you?
A: We are the OEM Manufacturer of varied kinds of Planetary Gear Reducers, Geaboxes, Bush Motors, Helical Precision Reducers.
Q: How to choose a most suitable Precision Reducer?
A: You can tell me your requirements, such as where does they use, the detailed specifications. Just like like voltage, speed, torque, motor size, working mode of the motor, needed lifetime and noise level etc, please do not hesitate to let us know, then we can recommend suitable motor per your request accordingly.
Q: Do you support Customization or have standard gear motors?
A: Yes. We accpet customization, just send us your detailed drawings. We also do standard motors, if you need, we can delivery soon.
Q: How about your lead time?
A: The leading time of standard motor in our factory just need 15-30 days. If it is a customized, it may take more time to produce. But, it always according to the orders.
/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
| Application: | Motor, Electric Cars, Motorcycle, Machinery, Marine, Agricultural Machinery, Car |
|---|---|
| Hardness: | Hardened Tooth Surface |
| Installation: | Horizontal Type |
| Samples: |
US$ 100/Piece
1 Piece(Min.Order) | Order Sample |
|---|
| Customization: |
Available
| Customized Request |
|---|
.shipping-cost-tm .tm-status-off{background: none;padding:0;color: #1470cc}
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Shipping Cost:
Estimated freight per unit. |
about shipping cost and estimated delivery time. |
|---|
| Payment Method: |
|
|---|---|
|
Initial Payment Full Payment |
| Currency: | US$ |
|---|
| Return&refunds: | You can apply for a refund up to 30 days after receipt of the products. |
|---|

The Basics of a Planetary Gearbox
The basic model of a planetary gearbox is a highly efficient transmission that transmits nearly ninety percent of the power it receives. The basic planetary gearbox comes in three basic types: Inline, Helical, and Spur. Below, we will discuss the differences between each of them and which one is better for your needs. A planetary gearbox is an important part of any engine and may be the perfect choice for your vehicle.
Inline planetary gearbox
An inline planetary gearbox has an inline arrangement of gears that enables the transfer of power. Its design makes it stable and reliable, and the space and weight-saving benefits make it a popular choice for many applications. Planetary gearboxes have low inertia, high torque, and a wide range of reduction ratios, which make them a versatile choice for many industries. To find out more about this type of gearbox, read about its construction and specifications.
A planetary gearbox is composed of two parts: a sun gear (also called the central or input gear), and two planet gears (also called outer gears). These gears are connected to each other via a carrier. In order to get the best performance from your gearbox, it’s important to find a model with the features and benefits required for your application. Also, be sure to check out the delivery time, global availability, and customer service of your selected constructor. A few constructors are faster than others and have the ability to respond quickly, while others can deliver every single planetary gearbox out of stock.
Whether you’re using an inline planetary gearbox for your car’s transmission, or you’re building a new machine, it’s important to choose the right size for your application. The most common ratio is five:1, but an inline gearbox can be as high as 1000:1! The torque range is between 250-950 lb-in for continuous torque, and up to 5800 lb-in for yield torque. Some companies even offer custom shafts if you need them to fit a specific application.
Inline planetary gearboxes have a high ratio of helical rotation and are useful for applications where space is limited. Their low-backlash design allows them to handle high torques and high accelerations without backlash. Despite their compact size, planetary gear systems also have high single-stage reduction ratios, a feature that makes them ideal for a variety of industrial applications. They can also be connected for high reduction ratios.
An inline planetary gearbox can be used in many applications, from small tools to heavy industrial machinery. Its basic design includes three components: an input gear pair, an output gear pair, and a stationary position. Some planetary gearbox designs also include additional gear sets that can provide a slight offset between input and output. A planetary gearbox may also contain multiple bearings, which make the assembly more robust and reliable.
Inline planetary gear reducers are commonly used in industrial settings to slow down an electric motor. They are able to multiply torque, which means they can reduce the input speed to a level where the mechanical devices inside the motor can function properly. This type of gear reducer also has a low clearance, which makes it ideal for machines with high torque. However, you should consider the amount of torque required in your application before you make a purchase.
Helical planetary gearbox
A helical planetary gearbox is a type of mechanical system. The gears are connected by joints to the carrier that holds the planets stationary. The sun gear serves as an input to the other gears, and the planet gears rotate at a rate that depends on the number of teeth in each gear. The ratio between these gears is -Ns/Np, and the number of teeth in the ring is N r, N s, and N p.
Another type of planetary gearbox uses multiple helical axes to distribute the load. This design also offers high stiffness and low backlash, which is important for applications involving frequent start-stop cycles and rotational direction changes. It also features a compact design and low mass inertia. A helical planetary gearbox can be used for a wide range of applications. Listed below are some of the benefits of helical gear technology.
The basic design of a helical planetary gear is based on the principle of stepping planets. This concept eliminates the need for timing marks and restrictive assembly conditions. The planetary gear’s helical shape can be modified to achieve a greater transmission ratio in an equal or smaller volume. For example, a 50-T ring gear will yield the same effect as a 100-T ring gear.
In addition to the helical axis, a helical planetary gearbox also has a wide variety of secondary features that are critical to torque transmission. For instance, compact needle roller bearings are appropriate for a helical planetary gearbox because of their low-profile design and small space. However, a tapered roller bearing is better suited to handling high axial forces. In general, a helical planetary gearbox will have a higher efficiency rate and lower noise levels.
A helical planetary gearbox will have a number of components that can vary in size and shape. They will include a sun gear and many planetary parts. The central sun gear will take a low-torque input and will run multiple external gears to increase the torque and speed. This basic model of a planetary gearbox is highly efficient, transferring 97% of the power input. There are three main types of planetary gearboxes: the cylindrical planetary gearbox, the helical planetary gearbox, and the helical wormwheel.
The CZPT is a good example of an entry-level helical planetary gearbox. It is extremely reliable and aimed at providing torque in quiet applications with high precision. The Access series is another option, which is designed to meet the needs of the low-backlash planetary gearbox market. It features helical planetary gears with five to eight arc-minutes backlash, and is built on a monobloc housing.
A helical planetary gearbox is widely used in 3D printing. They are lightweight and can provide a high gear ratio. In addition to their low weight and high efficiency, some people have installed them into 3D printers to improve the accuracy of their designs. And in addition to 3D printing, helical gears are used in many industrial applications. If you’re thinking about purchasing one, you should know what the benefits are.
Spur planetary gearbox
There are many advantages to a spur planetary gearbox, from its compact design and low cost to its unmatched power transmission capacity per unit volume. Planetary gears have high efficiency per stage and can achieve up to 95% efficiency, depending on the ratio. Planet gears are mounted on a joint carrier, and the output rotation speed is slower than the drive rotation speed, which leads to increased torque. The higher the gear wheels, the more torque the unit can produce.
A spur planetary gearbox incorporates multiple other gear sets that must have helical teeth. These other gear sets must be helical, and the motor must be aligned with the driven parts. The spur gears are the most efficient type of planetary gear, as their teeth are symmetrical, which means no axial forces are generated. The difference between a spur and a planetary gearbox is its shape.
The right angle spur planetary gearbox is a versatile design with a spiral bevel gear that provides superior smoothness and quiet operation. This gearhead is case-hardened and ground to increase its efficiency. These gears can be purchased in 3-100 ratios. Spur planetary gearboxes can also have ISO rotary flanges, keyed shafts, DIN splines, or hollow compression connections.
A spur planetary gearbox utilizes spur gears around the circumference of the mechanism. The spur gears rotate between gears that have internal and external teeth. Because of this, the angular velocity of the spur gear differential carrier is the average of the ring gears and sun gears. A spur gearbox can also be considered a compound planetary gear. It is typically used for servo applications. Unlike spur gears, helical planetary gears are easier to maintain and have lower noise levels.
The most notable difference between a spur planetary gearbox and a planetary gearhead is the lubrication of the pinion and the spur gear head. A spur gear head is less complex, but cannot handle the same amount of load as a planetary gearhead. Both types can achieve the same backlash, but a planetary gearhead has better lubrication retention than a spur gear. It can run at higher speeds without excessive lubrication, while a spur gear drive is more efficient at low speeds. The reduction ratio of a planetary gearhead is near unity while that of a planetary gear head is many thousand to one.
A planetary gearbox has many applications. Plastic machinery, goods & personnel lifts, and machine tools are all prime examples of these types of gearing systems. Other industries that use these gears include wind turbines and sugar crystallizers, as well as steel and sugar mills. And of course, the use of planetary gears is not limited to these industries. It is used in many different ways, including slewing drives, mill drive, and derrick & dockyard cranes


editor by Dream 2024-05-07
China wholesaler One-Button CZPT Shaft Output Cycloidal Gearbox with Motor Direct Input Types with Best Sales
Product Description
Starshine Drive Cycloid Geared Motor Characteristics
1. Features:
1. Smooth running,low noise gear tooth needle more engagement.
2. Cycloidal tooth profile provides a high contact ratio to withstand overload shocks
3. Compact size: single ratio available from 1/9 to 1/87, double stage up from 1/99 to 1/7569
4. Ideal for dynamic applications: frequent start-stop-reversing duties suits for cyclo speed reducer since inertia is low
5. Reduce maintenance costs: high reliability, long life, minimal maintenance compared to conventional gearboxes
6. Internal parts replaceable with other brands to ensure running.
7. Grease Lubricated & Oil Lubricated Models Available
8. Output Shaft Rotation Direction: Single Reduction: Clockwise Rotation; Double Reduction→ Counter Clockwise Rotation
9. Ambient Conditions: Indoor Installation:10-40 Celsius, Max 85% Humidity, Under 1000m Altitude, Well Ventilated Environment, Free of corrosive, explosive gases, vapors and dust
10.Slow Speed Shaft Direction: Horizontal, Vertical Up & Down, Universal Direction
11.Mounting Style: Foot Mount, Flange Mount & Vertical F-flange Mount,
12. Input Connection: Cyclo Integral Motor, Hollow Input Shaft Adapter
13. Coupling Method With Driven Machine: Coupling, Gears, Chain Sprocket Or Belt
14. Cycloid reducer Capacity Range: 0.37kW ~ 11kW;
2. Technical parameters
| Type | Old Type | Output Torque | Output Shaft Dia. |
| SXJ00 | JXJ00 | 98N.m | φ30 |
| SXJ01 | JXJ01 | 221N.m | φ35 |
| SXJ02 | JXJ02 | 448N.m | φ45 |
| SXJ03 | JXJ03 | 986N.m | φ55 |
| SXJ04 | JXJ04 | 1504N.m | φ70 |
| SXJ05 | JXJ05 | 3051N.m | φ90 |
| SXJ06 | JXJ06 | 5608N.m | φ100 |
About Us
ZheJiang CZPT Drive Co.,Ltd,the predecessor was a state-owned mould enterprise, was established in 1965. CZPT specializes in the complete power transmission solution for high-end equipment manufacturing industries based on the aim of “Platform Product, Application Design and Professional Service”.
CZPT have a strong technical force with over 350 employees at present, including over 30 engineering technicians, 30 quality inspectors, covering an area of 80000 square CZPT and kinds of advanced processing machines and testing equipments. We have a good foundation for the industry application development and service of high-end speed reducers & variators owning to the provincial engineering technology research center,the lab of gear speed reducers, and the base of modern R&D.
Our Team
Quality Control
Quality:Insist on Improvement,Strive for Excellence With the development of equipment manufacturing indurstry,customer never satirsfy with the current quality of our products,on the contrary,wcreate the value of quality.
Quality policy:to enhance the overall level in the field of power transmission
Quality View:Continuous Improvement , pursuit of excellence
Quality Philosophy:Quality creates value
3. Incoming Quality Control
To establish the AQL acceptable level of incoming material control, to provide the material for the whole inspection, sampling, immunity. On the acceptance of qualified products to warehousing, substandard goods to take return, check, rework, rework inspection; responsible for tracking bad, to monitor the supplier to take corrective
measures to prevent recurrence.
4. Process Quality Control
The manufacturing site of the first examination, inspection and final inspection, sampling according to the requirements of some projects, judging the quality change trend;
found abnormal phenomenon of manufacturing, and supervise the production department to improve, eliminate the abnormal phenomenon or state.
5. FQC(Final QC)
After the manufacturing department will complete the product, stand in the customer’s position on the finished product quality verification, in order to ensure the quality of
customer expectations and needs.
6. OQC(Outgoing QC)
After the product sample inspection to determine the qualified, allowing storage, but when the finished product from the warehouse before the formal delivery of the goods, there is a check, this is called the shipment inspection.Check content:In the warehouse storage and transfer status to confirm, while confirming the delivery of the
product is a product inspection to determine the qualified products.
7. Certification.
Packing
Delivery
/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
| Application: | Motor, Machinery, Agricultural Machinery, Ceramic |
|---|---|
| Hardness: | Hardened Tooth Surface |
| Installation: | Vertical or Horizotal Type |
| Layout: | Coaxial |
| Gear Shape: | Planetary Conedisk Friction Type |
| Step: | Stepless |
| Customization: |
Available
| Customized Request |
|---|

Planetary Gearbox Components
The basic components of a planetary gearset are an input, output, and stationary position. Different types of planetary gearboxes will have different output ratios and torques. A leading company for planetary gearbox design, CZPT, provides the necessary components. These components can vary in both male and female shafts and come with a variety of modular options. Here are a few things to consider about each component.
CFHK Series
The CFHK Series is a multistage planetary gearbox that contains multiple planetary gears. The multiple teeth of each planetary gear mesh simultaneously during operation to increase the transmittable torque. The gears are case hardened and ground, and the ratios of the planetary gears are integers. They were first functionally described by Leonardo da Vinci in 1490. Today, the CFHK Series is a favorite among automotive engineers and manufacturers.
The CH Series offers high accuracy with a compact design and case hardened, hypoid, and helical gearing. These gearboxes are also available in the CFXR series, with low backlash and friction. These planetary gearboxes are designed to provide high torque and high precision in a variety of applications. In addition, the CFXR series features 100% helical gearing and low backlash.
The CFHK Series features a sun gear that drives the next stage. These gears can be put in series or serially in the same housing. In some cases, the output shaft of the first stage becomes the input shaft of the second stage. In addition, ring gears are also used as structural parts of smaller gearboxes. An example of a planetary gearbox is the pencil sharpener mechanism. The pencil is placed on an axis that is set on a sun gear. The sun gear drives the next planet stage.
A planetary gear unit’s gear ratio is determined by the number of teeth in the sun gear and ring gear. The smaller the sun gear, the smaller the ratio between the sun gear and planet gears. The largest gear ratio in a planetary gear unit is 10:1. A higher number of teeth increases the transmission ratio. In order to maximize torque, the planetary gears must be rearranged. A smaller sun gear will have higher torque than a large ring gear.
CFX Series
The HPN Harmonic Planetary(r) Series planetary gearboxes offer a low-cost solution with high-performance and high-reliability. This modular design is easy to install and requires very little maintenance. Its planetary design and full complement of needle rollers allow for extended life and quiet operation. In addition, the HPN Harmonic Planetary(r) Series is available in a range of sizes.
The compact size and high-speed design of planetary gearboxes results in excellent heat dissipation. However, high-speed or sustained performance applications may require lubricants. A planetary gearbox will have smaller minimum steps to minimize noise and vibration. Planetary gears will give you the highest level of efficiency while minimizing noise. As a result, they can provide high-quality 3D prints.
A planetary gear train is composed of a ring gear and planet gears, each supported by a carrier. A ring gear is pink, while the sun gear is red. The sun gear and carrier rotate around each other at a 45-degree angle. This is also known as an epicyclic gear. Planetary gearboxes are often found in space-constrained applications. The CFX Series features a compact design and excellent performance.
The CFX Series features a robust design that is easy to install. Its compact size makes installation of planetary gearboxes easier and faster. They are available in three different configurations for continuous, intermittent, and counter-clockwise operation. The CFX Series offers the perfect solution for your accelerating needs. They’re a great solution for any automotive or industrial application. You can easily configure the CFX Series to meet your specific requirements.
CAP Series
The Candy Controls CAP Series is a new generation of compact, precision planetary gearboxes that combine high torques with low backlash and exceptional wear resistance. This rotary flange planetary gearbox is ideal for a variety of industrial, mining and marine applications. Its modular construction enables users to easily mount different stages, hydraulic or electric motors, and different types of gears. Its CPH Series features an extremely rigid alloy steel housing, carburized gears, and induction hardened gears.
The CAP Series utilizes multiple planetary gears for high torque transmission. The number of planetary gears is not fixed, but most planetary gearboxes utilize at least three. The larger the number of planetary gears, the higher the transmittable torque. A planetary gearbox is composed of multiple planetary gears with a meshing action that occurs simultaneously during operation. The result is a higher efficiency and a smoother, quieter operation than a conventional gearbox.
The VersaPlanetary range features modular design for easy installation. This system includes mounting plates for typical FIRST (r) Robotics Competition motors. The mounting plates are designed to fit each motor. These planetary gearboxes are compatible with various types of motors, from small electric motors to large, heavy duty ones. They are also compatible with a variety of mounting systems, including CIM motors.
CAPK Series
The CZPT APK Series is a high precision, rotary flange style planetary gearbox. Its case hardened and ground gears are designed to provide excellent wear resistance, low backlash, and excellent precision. The CAPK Series offers high axial and moment load capacities in a compact housing. CZPT is the world leader in the production of planetary gearboxes. The CAPK Series features an array of high-quality, innovative features.
CZPT SMART Lubrication technology is used to keep the gears well-lubricated and reduce noise and vibration. The planetary gearbox’s 3-gear design is ideal for DIY CNC robotics. This series has a long history of quality, and CZPT uses only the best components. The CZPT 3:1 High Precision Planetary Gearbox is an excellent choice for CNC Robotics and other applications.
A multi-stage planetary gearbox combines individual ratios for a greater number of ratios. Additional planetary gears increase the transmittable torque. The direction of the output and drive shaft are always identical. The CAPK Series features a high-quality, durable construction. They are made from stainless steel and offer a long-term warranty. They are the best choice for industrial and commercial applications. While planetary gears are more expensive, they are highly efficient.
CFH Series
The Candy CFH Series planetary gearboxes offer the benefits of a modular design and a low backlash. They offer a variety of size options and excellent durability. This planetary gearbox is compact and wear resistant. The CFH Series planetary gearbox has a carburized, induction hardened gears and a rigid alloy steel housing. Its low backlash and precision make it an excellent choice for industrial applications.
The CFH Series planetary gearbox is a highly efficient, high-speed helical gear. The compact design of this gearbox results in high heat dissipation and low mass inertia. Planet carrier bearings experience significant lateral forces from the transmission of torque. As a result, radial and axial forces oppose each other. The result is that the torque is distributed over three gears, reducing noise, vibration, and wear.
The planetary gearbox has three main components: a sun gear (also known as the input gear), a ring gear, and two planet gears. These are connected by a carrier that rotates about a 45-degree clockwise axis. The CFH Series of gears is available in triple and double stages. They can also be used in electric motors. As a result, the CFH Series is highly versatile.
The CFH Series of planetary gearboxes can be found in all kinds of applications, including automotive transmissions. Their compact design and high-performance performance make them a popular choice for space-constrained applications. This gearbox has several benefits and is a great alternative to a conventional helical gearbox. These gearboxes are highly effective for reducing torque and speed, and are compact enough to fit in most applications.
CZPT
If you need a high-quality planetary gearbox, the CZPT Planetary Series is the right choice. This Italian company designs and manufactures gearboxes in its San Polo d’Enza, Italy, facility with 11 branch offices and three production facilities. The company is attempting to replicate the success of the Italian Super Car industry, which has gained global recognition. The company provides a range of gearboxes for use in heavy industry, agriculture, offshore, aerial and marine work.
With over 40 years of experience, CZPT manufactures a wide range of high-quality gearboxes. From bevel-helical units to Helical units, wheel gears and negative brakes, the company has been manufacturing quality components for many industries. CZPT is a trusted Australian distributor of CZPT gear components. The company is dedicated to providing the best planetary gears for every industry.
If your CZPT Planetary gearbox is malfunctioning, you can have it repaired quickly and easily. The company uses quality materials and a variety of sizes and output ratios to cater to the most demanding applications. In addition, you can customize your gearbox to suit your specific needs. CZPT Planetary Gearboxes are highly versatile and customizable, offering infinite scalability.


editor by Dream 2024-05-06
China Best Sales Best Price of P Series Planetary Gearbox for Concrete Mixer Worm Gear Reduction Motor with Great quality
Product Description
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Product Name |
Best price of P series planetary gearbox for concrete mixer |
|
Series |
gear reducer |
|
Application |
Power Tranmission |
|
Bearing |
China Top brand HRB,LYC,ZWZ or other brands requested, CZPT |
|
Used |
industry machinery |
Product Description
1.P series planetary gear reducer is widely used in metallurgy , mining, lifting and transport , electricity, energy , building
materials, light industry, transportation and other industrial sectors.
2. P series planetary gear involute planetary gear transmission , within a reasonable use, external gear , power split .
3. The planetary gear modular design changes can be combined according to customer requirements.
4.Carburized gears are used to obtain high- hard wear-resistant surface , all the heat treatment after grinding gear teeth ,
reduce noise , improve the overall efficiency and service life.
5. Hight quality gear reducer , small transmission ratio range , high efficiency, smooth operation, low noise adaptability and
other characteristics .
Company Profile
Certifications
Packaging & Shipping
FAQ
/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
| Hardness: | Hardened Tooth Surface |
|---|---|
| Installation: | Horizontal Type |
| Layout: | Coaxial |
| Gear Shape: | Planetary |
| Step: | Single-Step |
| Type: | Gear Reducer |
| Samples: |
US$ 100000/Piece
1 Piece(Min.Order) | |
|---|

Planetary Gearbox
This article will explore the design and applications of a planetary gearbox. The reduction ratio of a planetary gearbox is dependent on the number of teeth in the gears. The ratios of planetary gearboxes are usually lower than those of conventional mechanical transmissions, which are mainly used to drive engines and generators. They are often the best choice for heavy-duty applications. The following are some of the advantages of planetary gearboxes.
planetary gearboxes
Planetary gearboxes work on a similar principle to solar systems. They rotate around a center gear called the sun gear, and two or more outer gears, called planet gears, are connected by a carrier. These gears then drive an output shaft. The arrangement of planet gears is similar to that of the Milky Way’s ring of planets. This arrangement produces the best torque density and stiffness for a gearbox.
As a compact alternative to normal pinion-and-gear reducers, planetary gearing offers many advantages. These characteristics make planetary gearing ideal for a variety of applications, including compactness and low weight. The efficiency of planetary gearing is enhanced by the fact that ninety percent of the input energy is transferred to the output. The gearboxes also have low noise and high torque density. Additionally, their design offers better load distribution, which contributes to a longer service life.
Planetary gears require lubrication. Because they have a smaller footprint than conventional gears, they dissipate heat well. In fact, lubrication can even lower vibration and noise. It’s also important to keep the gears properly lubricated to prevent the wear and tear that comes with use. The lubrication in planetary gears also helps keep them operating properly and reduces wear and tear on the gears.
A planetary gearbox uses multiple planetary parts to achieve the reduction goal. Each gear has an output shaft and a sun gear located in the center. The ring gear is fixed to the machine, while the sun gear is attached to a clamping system. The outer gears are connected to the carrier, and each planetary gear is held together by rings. This arrangement allows the planetary gear to be symmetrical with respect to the input shaft.
The gear ratio of a planetary gearbox is defined by the sun gear’s number of teeth. As the sun gear gets smaller, the ratio of the gear will increase. The ratio range of planetary gears ranges from 3:1 to ten to one. Eventually, however, the sun gear becomes too small, and the torque will fall significantly. The higher the ratio, the less torque the gears can transmit. So, planetary gears are often referred to as “planetary” gears.
Their design
The basic design of a Planetary Gearbox is quite simple. It consists of three interconnecting links, each of which has its own torque. The ring gear is fixed to the frame 0 at O, and the other two are fixed to each other at A and B. The ring gear, meanwhile, is attached to the planet arm 3 at O. All three parts are connected by joints. A free-body diagram is shown in Figure 9.
During the development process, the design team will divide the power to each individual planet into its respective power paths. This distribution will be based on the meshing condition of all gears in the system. Then, the design team will proceed to determine the loads on individual gear meshes. Using this method, it is possible to determine the loads on individual gear meshes and the shape of ring gear housing.
Planetary Gearboxes are made of three gear types. The sun gear is the center, which is connected to the other two gears by an internal tooth ring gear. The planet pinions are arranged in a carrier assembly that sets their spacing. The carrier also incorporates an output shaft. The three components in a Planetary Gearbox mesh with each other, and they rotate together as one. Depending on the application, they may rotate at different speeds or at different times.
The planetary gearbox’s design is unique. In a planetary gearbox, the input gear rotates around the central gear, while the outer gears are arranged around the sun gear. In addition, the ring gear holds the structure together. A carrier connects the outer gears to the output shaft. Ultimately, this gear system transmits high torque. This type of gearbox is ideal for high-speed operations.
The basic design of a Planetary Gearbox consists of multiple contacts that must mesh with each other. A single planet has an integer number of teeth, while the ring has a non-integer number. The teeth of the planets must mesh with each other, as well as the sun. The tooth counts, as well as the planet spacing, play a role in the design. A planetary gearbox must have an integer number of teeth to function properly.
Applications
In addition to the above-mentioned applications, planetary gearing is also used in machine tools, plastic machinery, derrick and dock cranes, and material handling equipments. Further, its application is found in dredging equipment, road-making machinery, sugar crystallizers, and mill drives. While its versatility and efficiency makes it a desirable choice for many industries, its complicated structure and construction make it a complex component.
Among the many benefits of using a planetary gearbox, the ability to transmit greater torque into a controlled space makes it a popular choice for many industries. Moreover, adding additional planet gears increases the torque density. This makes planetary gears suitable for applications requiring high torque. They are also used in electric screwdrivers and turbine engines. However, they are not used in everything. Some of the more common applications are discussed below:
One of the most important features of planetary gearboxes is their compact footprint. They are able to transmit torque while at the same time reducing noise and vibration. In addition to this, they are able to achieve a high speed without sacrificing high-quality performance. The compact footprint of these gears also allows them to be used in high-speed applications. In some cases, a planetary gearbox has sliding sections. Some of these sections are lubricated with oil, while others may require a synthetic gel. Despite these unique features, planetary gears have become common in many industries.
Planetary gears are composed of three components. The sun gear is the input gear, whereas the planet gears are the output gears. They are connected by a carrier. The carrier connects the input shaft with the output shaft. A planetary gearbox can be designed for various requirements, and the type you use will depend on the needs of your application. Its design and performance must meet your application’s needs.
The ratios of planetary gears vary depending on the number of planets. The smaller the sun gear, the greater the ratio. When planetary stages are used alone, the ratio range is 3:1 to 10:1. Higher ratios can be obtained by connecting several planetary stages together in the same ring gear. This method is known as a multi-stage gearbox. However, it can only be used in large gearboxes.
Maintenance
The main component of a planetary gearbox is the planetary gear. It requires regular maintenance and cleaning to remain in top shape. Demand for a longer life span protects all other components of the gearbox. This article will discuss the maintenance and cleaning procedures for planetary gears. After reading this article, you should know how to maintain your planetary gearbox properly. Hopefully, you can enjoy a longer life with your gearbox.
Firstly, it is important to know how to properly lubricate a planetary gearbox. The lubricant is essential as gears that operate at high speeds are subject to high levels of heat and friction. The housing of the planetary gearbox should be constructed to allow the heat to dissipate. The recommended oil is synthetic, and it should be filled between 30 and 50 percent. The lubricant should be changed at least every six months or as needed.
While it may seem unnecessary to replace a planetary gearbox, regular servicing will help it last a long time. A regular inspection will identify a problem and the appropriate repairs are needed. Once the planetary gearbox is full, it will plug with gear oil. To avoid this problem, consider getting the unit repaired instead of replacing the gearbox. This can save you a lot of money over a new planetary gearbox.
Proper lubrication is essential for a long life of your planetary gearbox. Oil change frequency should be based on oil temperature and operating speed. Oil at higher temperatures should be changed more frequently because it loses its molecular structure and cannot form a protective film. After this, oil filter maintenance should be performed every few months. Lastly, the gearbox oil needs to be checked regularly and replaced when necessary.


editor by Dream 2024-04-29