首页 /研究 /Structural Characteristics of Rotate Vector Reducer Free Vibration
OTHER

Structural Characteristics of Rotate Vector Reducer Free Vibration

Chuan Chen, Yuhu Yang

发表年份
2017
引用次数
11
访问权限
开放获取

摘要

For RV reducer widely used in robots, vibration significantly affects its performance. A lumped parameter model is developed to investigate free vibration characteristics without and with gyroscopic effects. The dynamic model considers key factors affecting vibration such as involute and cycloid gear mesh stiffness, crankshaft bending stiffness, and bearing stiffness. For both nongyroscopic and gyroscopic systems, free vibrations are examined and compared with each other. Results reveal the specific structure of vibration modes for both systems, which results from symmetry structure of RV reducer. According to vibration of the central components, vibration modes of two systems can be classified into three types, rotational, translational, and planetary component modes. Different from nongyroscopic system, the eigenvalues with gyroscopic effects are complex-valued and speed-dependent. The eigenvalue for a range of carrier speeds is obtained by numerical simulation. Divergence and flutter instability is observed at speeds adjacent to critical speeds. Furthermore, the work studies effects of key factors, which include crankshaft eccentricity and the number of pins, on eigenvalues. Finally, experiment is performed to verify the effectiveness of the dynamic model. The research of this paper is helpful for the analysis on free vibration and dynamic design of RV reducer.

关键词

ReducerCrankshaftVibrationStructural engineeringCycloid gearBearing (navigation)EngineeringNormal modeControl theory (sociology)Computer science

相关论文

查看 OTHER 分类全部论文