Dynamic Modeling of Rolling Bearing with Local Defect under Thermal Elastohydrodynamic Lubrication
编号:153 访问权限:仅限参会人 更新:2021-08-30 12:34:24 浏览:236次 口头报告

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摘要
    The lubrication film between the raceway and rolling element in rolling bearing is point contact elastohydrodynamic lubrication (EHL), which transforms the stiffness and damping of the rolling bearing. Lubrication failure caused by local heating could lead to the local defects in rolling bearing and seriously affects the normal operation of machinery. Therefore, this paper conducted a coupling study on the tribological and dynamic performances of bearing-rotor system under thermal effect of lubricant. Considering thermal variation of film, comprehensive stiffness and damping and time-varying displacement, a dynamic rolling bearing model with local defect based on thermal EHL was established, then this model was verified by experiments. The influences of lubrication characteristics such as film thickness and temperature change on the bearing vibrations were analyzed. Compared with isothermal EHL, the results show that the film thickness and the film carrying capacity are reduced under thermal EHL. The lubrication film performances could affect the stability of rolling bearing, speed up the failure rates and reduce the service life. Hence the thermal effect of lubricant cannot be ignored. This model can accurately simulate the actual state of rolling bearing, which is contribute to the optimization and fault diagnosis of rolling bearing.
关键词
Rolling bearing,Thermal EHL,Dynamic model,Lubrication state,local defect
报告人
Yubo Wang
Graduate Student Lanzhou University of Technology;School of Mechanical and Electronical Engineering

稿件作者
Yubo Wang Lanzhou University of Technology;School of Mechanical and Electronical Engineering
Changfeng Yan Lanzhou University of Technology;School of Mechanical and Electronical Engineering
Bin Liu Lanzhou University of Technology;School of Mechanical and Electronical Engineering
Xin Zhang Lanzhou University of Technology;School of Mechanical and Electronical Engineering
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重要日期
  • 会议日期

    11月01日

    2022

    11月03日

    2022

  • 10月30日 2022

    初稿截稿日期

  • 11月09日 2022

    注册截止日期

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Qingdao University of Technology
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