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BWD Series

BWD Series Planetary Cycloidal Reducer

Planetary cycloidal reducer combines planetary transmission with cycloidal motion to achieve controlled speed reduction and stable torque output. The eccentric mechanism drives cycloidal discs to create continuous rolling contact, which helps reduce vibration during operation. Its structure supports high reduction ratios within compact dimensions while maintaining steady performance. At the same time, the internal design distributes load across multiple contact points, allowing the system to operate smoothly under varying load conditions in continuous mechanical environments.

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Product Features

All planetary cycloidal reducer rotating device can be divided into three parts:input part,deceleration part and output part.

Dislocation on the input shaft is equipped with a 180℃ of double eccentric sleeve,equipped with two ball bearings on the eccentric sleeve,the formation of H two cycloid gear center hole is the eccentric sleeve on the turning arm bearing raceway,and by a groud of cycloid gear and pin gear ring of gear meshing,less bad tooth meshing reduction mechanism to form,(in order to reduce friction,in small ratio of speed reducer,the needle with needle teeth on the gear set).

When the input shaft with eccentric sleeve rotation for a week,as a result of the cycloid gear tooth profile curve characteristics and restricted by needle on the gear teeth,the movement of the cycloid gear becoming both revolution and rotation of the plane movement,and input shaft are made for a week,eccentric sleeve also turn the week,cycloid gear in the opposite direction around a big tooth difference reduction is obtained, then with the help pf W output mechanism,the cycloid gear rotates at low speed movement through the pin shaft,passed to the output shaft,low output speed can be achieved.

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Planetary Cycloidal Reducer For High Ratio Transmission Systems

Planetary cycloidal reducer delivers controlled speed reduction and stable torque output through a K-H-V planetary transmission structure. It uses a double eccentric mechanism to drive cycloidal discs, which engage with a pin gear ring to form differential tooth meshing. This structure supports smooth motion and maintains stable transmission performance during continuous operation.

Cycloidal Planetary Structure For Stable Motion Control

  • Double eccentric sleeve creates continuous orbital motion
  • Differential tooth meshing supports high reduction ratio
  • Multi-point contact improves load distribution
  • Compact structure supports installation in limited space

The transmission process begins when the input shaft rotates the eccentric sleeves. This motion drives the cycloidal discs to perform both rotation and revolution. At the same time, the discs engage with the pin gear ring, creating a differential movement that reduces speed while increasing torque. This mechanism allows the reducer to achieve a large reduction ratio within a compact structure.

As rotation continues, several teeth remain in contact, which helps distribute load evenly across the system. This reduces stress on individual components and keeps torque output stable under changing load conditions. In addition, rolling contact between the cycloidal disc and pin gear ring helps reduce friction and supports smooth operation.

The enclosed housing protects internal components while maintaining stable lubrication conditions. This structure supports consistent motion over extended operating cycles. Planetary cycloidal reducer works well in systems that require compact size, stable transmission, and high reduction performance.

Technical Specifications

Industry Applications

  • Rubber & Plastic Machinery
    Extruders, mixers, calenders, processing lines
  • Mining & Heavy Industry
    Crushers, feeders, mills, heavy-duty conveyors
  • Mixing & Agitation Equipment
    Mixers, agitators, blenders, industrial processors
  • Conveyor Systems
    Belt conveyors, roller conveyors, transfer systems, material handling

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