Planetary Drive
Features of Planetary Drive?
1. Compact design and dimension.
2. High efficiency, high output torque.
3. Wide range of ratio, stable running.
4. Realize the coaxial shaft drive, to save space.
Specification
|
ANG Industrial Planetary Drive |
|
|
Type |
Coaxial inline type, 90 degree type |
|
Model |
P1 ~ P21 |
|
Motor |
1.1KW ~ 13000KW |
|
Input speed |
750rpm to 3600rpm |
|
Reduction ratio |
Between 1/3.5 and 1/4000 |
|
Output torque |
Can be up to 2500 kN.m |
|
Install type |
Foot / Torque arm / Output flange |
|
Material of input and output shaft |
Carbon steel |
|
Efficiency level |
Above 94% |
|
Biggest noise |
60 ~ 68 decibels |
|
Biggest temperature rise |
40 degrees Celsius |
|
Biggest oil temperature rise |
50 degrees Celsius |
Applications of Planetary Drive
Planetary drive gearboxes are commonly used in a variety of industries, including aerospace, automotive, and industrial manufacturing. They can be found in applications such as gas and diesel engines, hydraulic systems, and power transmission systems. They are also used in many robotics and automation systems, where precise and efficient control is essential.
Components of Planetary Drive
1. Gear Housing: Ductile Cast Iron
2. Gears: Planetary Gear System (Epicyclic Gears)
3. Input Options:
Integrated with Electric Motors (AC Motors, Hydraulic Motors, Geared Motors)
IEC normalized Motor Flange & Motor Adaptor
Keyed Solid Shaft Input
4. Output Configurations:
Keyed Solid Shaft Output
Involute Splined Solid Shaft Output (GB or DIN Standard)
Involute Splined Hollow Shaft Output (GB or DIN Standard)
Hollow Shaft Output with Shrink Disc
5. Optional Accessories:
Gear Unit Base for Horizontal Mounted
Torque Arm, Torque Shaft Support
Motor Mounting Bracket
Dip Lubrication Compensation Oil Tank
Forced Lubrication Oil Pump
Cooling Fan, Auxiliary Cooling Devices
Planetary Drive Pictures
Introduction Of Ang Planetary Drive
Other Gears and Motors
What Is Production Process Of Planetary Drive?
The process of assembling the ang planetary drive involves several steps. First, the housing is prepared by cleaning and inspecting it for any defects. The sun gear is then installed in the center of the housing, followed by the planet gears, which are set in place around the sun gear. The carrier that holds the planet gears is then positioned over the planet gears, securing them in place.
Next, the ring gear is installed, and the teeth of the planet gears are engaged with the ring gear. Once the gears are in place, the shafts are installed, and the seals and bearings are added.
To ensure the gearbox is functioning correctly, it undergoes testing, including load testing and efficiency testing. Any necessary adjustments are made, and the gearbox is then ready for use.
The process of assembling a planetary gearbox is a meticulous task that requires precision and attention to detail. However, the end result is a powerful and efficient gearbox that can increase torque and speed ratios, making it an essential component in many industries, including automotive, aerospace, and robotics.
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