Investigation on meshing and dynamic characteristics of spur gears with tip relief under wear fault

被引:0
|
作者
YiFan Huangfu
KangKang Chen
Hui Ma
Xu Li
Xi Yu
BaiShun Zhao
BangChun Wen
机构
[1] Northeastern University,School of Mechanical Engineering and Automation
[2] Northeastern University,Key Laboratory of Vibration and Control of Aero
[3] Northeastern University,Propulsion Systems, Ministry of Education of China
来源
关键词
spur gears; tip relief; surface wear; mesh stiffness; dynamic characteristics;
D O I
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中图分类号
学科分类号
摘要
Combining the loaded tooth contact analysis (LTCA) method and the gear dynamic model, a wear prediction model for spur gears with tip relief is established. The simulated wear depth is verified by the experimental results in a published reference. Based on the wear profile, the mesh stiffness and the tooth root stress obtained from the proposed model are compared with those obtained from the finite element model. Relative to the finite element method, the proposed method can greatly reduce the computation time. The effects of the tip relief and surface wear on the meshing and the dynamic characteristics are discussed. The tip relief can greatly decelerate the surface wear. Appropriate tip relief and slight wear can decrease the tooth interference and reduce the system vibration. Furthermore, the effects of the rotational speed on the wear depth are also studied and it is found that the quasi-static model is applicable to wear prediction when the rotational speed is away from the harmonic resonance peak.
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页码:1948 / 1960
页数:12
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