摘要
Based on the structural characteristics of the multi-stage Planetary Roller Screw Mechanism (PRSM), the motion and force among the different stages are analyzed. In terms of the Newton's second law, the rigid-body motion equations of the multi-stage PRSM without considering the manufacturing and assembly errors are derived. Then, the method for solving the motion equations is given. The forces acting on the parts in the multi-stage PRSM and the motion of the mechanism can be obtained from the present rigid-body dynamic model. The influence of the friction coefficients among the different stages on the dynamic characteristics of the multi-stage PRSM is discussed. The results show that the forces acting on the first-stage PRSM are larger than that acting on the second-stage PRSM, although the nominal radius of the screw in the first-stage PRSM is smaller. The friction coefficient between the nut and the screw in the different stages has the great influence on the efficiency of multi-stages PRSM with small helix angles, while that among the screws in the different stages has the slight effect on the efficiency.
投稿的翻译标题 | Rigid-Body Dynamic Analysis of Multi-Stage Planetary Roller Screw Mechanism |
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源语言 | 繁体中文 |
页(从-至) | 1001-1009 |
页数 | 9 |
期刊 | Xibei Gongye Daxue Xuebao/Journal of Northwestern Polytechnical University |
卷 | 38 |
期 | 5 |
DOI | |
出版状态 | 已出版 - 1 10月 2020 |
关键词
- Dynamics
- Force analysis
- Motion analysis
- Multi-stage planetary roller screw mechanism