减速器
摆线
摆线齿轮
偏心率(行为)
结构工程
机制(生物学)
工程类
接触分析
方位(导航)
机械工程
计算机科学
控制理论(社会学)
有限元法
物理
量子力学
人工智能
法学
控制(管理)
政治学
作者
Xuan Li,Chaoyang Li,Yawen Wang,Bingkui Chen,Teik C. Lim
摘要
The load distribution analysis plays a significant role in the performance evaluation of cycloid speed reducer. However, current analytical models usually ignore elastic deformation, clearances, or assembly errors. These factors must be considered for realistic performance evaluation of cycloid speed reducer. This paper proposes an analytical model for cycloid speed reducer based on unloaded tooth contact and load distribution analyses. The proposed model can predict the loads on various components of the speed reducer in the presence of clearances and eccentricity errors. The results are compared with those predicted by the cycloid speed reducer model based on theoretical geometry. The effect of radial and pin-hole clearances as well as eccentricity errors, on some key design factors, such as contact stress, transmission error, gear ratio, and load on bearing, is investigated. This study can be used to assist the optimal design of cycloid speed reducers.
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