6732 - 31 - 4180
  • 6732 - 31 - 41806732 - 31 - 4180
  • 6732 - 31 - 41806732 - 31 - 4180
  • 6732 - 31 - 41806732 - 31 - 4180
  • 6732 - 31 - 41806732 - 31 - 4180

6732 - 31 - 4180

Guangzhou Jianleshun Machinery Co., Ltd. not only has a certain number of stable and high-quality suppliers, but also has established and improved a standardized remanufacturing process. At present, our products, 6732 - 31 - 4180 127 Teeth Flywheel Ring Gear, have been exported to Southeast Asia, Africa, South America and other countries and regions. In order to provide foreign investors with more professional and convenient services, it is positioned as a professional diversified import and export company integrating parts remanufacturing, sales and agency services.

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Product Description

6732 - 31 - 4180 127 Teeth Flywheel Ring Gear

 

1.Product Introduction

6732 - 31 - 4180 127 Teeth Flywheel Ring Gear A flywheel is a mechanical device which uses the conservation of angular momentum to store rotational energy; a form of kinetic energy proportional to the product of its moment of inertia and the square of its rotational speed. 


 In particular, if we assume the flywheel's moment of inertia to be constant (i.e., a flywheel with fixed mass and second moment of area revolving about some fixed axis) then the stored (rotational) energy is directly associated with the square of its rotational speed. 

 

2.ProductParameter (Specification)

Model

PC200 - 7

Part No

6732-31-4180

Teeth

127T

Specification

100% tested

Technics

Casting


3.Product Feature And Application

6732 - 31 - 4180 127 Teeth Flywheel Ring Gear A flywheel is a mechanical device which uses the conservation of angular momentum to store rotational energy; a form of kinetic energy proportional to the product of its moment of inertia and the square of its rotational speed.

 

4.Product Details

1.6732 - 31 - 4180 127 Teeth Flywheel Ring Gear

2. Providing energy faster than it can be supplied. 

3. Control the direction of mechanical system, gyroscope and reaction wheel

4. The total moment of inertia of the spokes, hub, and shaft can be estimated as a percentage of the flywheel moment of inertia.



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