Stiffness and damping analysis of a single ehl contact between the rolling element and raceways under wider load and speed ranges

Yuyan Zhang, Xiaoli Wang

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摘要

The numerical analysis for the equivalent stiffness and damping of a single EHL contact between the rolling element and raceways under wider load and speed ranges is presented. The unsteady EHL model and free vibration model are applied to describe the motion characteristics of the rolling element. The inlet length and dimensionless natural frequency are determined according to the corresponding working load and speed. The DC-FFT method is implemented in order to increase the computational efficiency associated with elastic deformations and the semi-system approach is applied to ensure solution convergence under severe conditions which makes the analysis of stiffness and damping in the larger ranges of load and speed possible. The numerical results demonstrate that the stiffness increases with the increasing load and decreases with speed. However, the changes of the damping are complex, which are different in various load and speed ranges, especially under heavier load and higher speed. It is also indicated that the stiffness and damping increases with the increase in ambient viscosity and the decrease in pressure-viscosity coefficient.

源语言英语
主期刊名ASME/STLE 2012 International Joint Tribology Conference, IJTC 2012
225-227
页数3
DOI
出版状态已出版 - 2012
活动ASME/STLE 2012 International Joint Tribology Conference, IJTC 2012 - Denver, CO, 美国
期限: 7 10月 201210 10月 2012

出版系列

姓名American Society of Mechanical Engineers, Tribology Division, TRIB

会议

会议ASME/STLE 2012 International Joint Tribology Conference, IJTC 2012
国家/地区美国
Denver, CO
时期7/10/1210/10/12

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引用此

Zhang, Y., & Wang, X. (2012). Stiffness and damping analysis of a single ehl contact between the rolling element and raceways under wider load and speed ranges. 在 ASME/STLE 2012 International Joint Tribology Conference, IJTC 2012 (页码 225-227). (American Society of Mechanical Engineers, Tribology Division, TRIB). https://doi.org/10.1115/IJTC2012-61086