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作 者:门静 曹阳 李晓 吴嘉卓 李永磊 贾谦 MEN Jing;CAO Yang;LI Xiao;WU Jiazhuo;LI Yonglei;JIA Qian(School of Mechanical Engineering,Xi′an Jiaotong University City College,Xi′an Shaanxi 710018,China;Engineering Research Center of Robot and Intelligent Manufacturing,Universities of Shaanxi Province,Xi′an Shaanxi 710018,China;School of Mechanical and Precision Instrument Engineering,Xi′an University of Technology,Xi′an Shaanxi 710048,China;Henan Zhongyuan Sliding Bearing Manufacturing Co.,Ltd.,Xinxiang Henan 453300,China)
机构地区:[1]西安交通大学城市学院机械工程学院,陕西西安710018 [2]机器人与智能制造陕西省工程研究中心,陕西西安710018 [3]西安理工大学机械与精密仪器工程学院,陕西西安710048 [4]河南中原滑动轴承制造有限公司,河南新乡453300
出 处:《润滑与密封》2024年第11期125-130,共6页Lubrication Engineering
基 金:机器人与智能制造陕西省高校工程研究中心基金项目(2022GY01)。
摘 要:针对第三代核电主泵水润滑轴承的工作特点,建立考虑热弹变形的推力轴承润滑性能的计算模型,研究推力轴承流、固、热耦合作用下的热弹流润滑特性,分析转速、载荷和瓦块弹性模量变化对水润滑推力轴承润滑性能和热弹变形的影响,计算的性能参数包括最小膜厚、最高温度、最大热变形和最大弹性变形。研究结果表明:最大热变形对转速和载荷的变化较为敏感,最大热变形随转速和载荷的增加而增大;最大弹性变形对载荷和弹性模量的变化较为敏感,最大弹性变形随载荷的增加而呈正比增大,最大弹性变形随弹性模量的增加减小的幅度较大。A calculation model for the lubrication performance of thrust bearings considering thermal elastic deformation was established based on the working characteristics of water lubricated bearings in the third generation nuclear power main pump.The thermal elastohydrodynamic lubrication characteristics of thrust bearings under the coupling of fluid,solid,and heat were studied.The effects of rotational speed,load,and elastic modulus of the pad on the lubrication performance and thermal elastic deformation of water lubricated thrust bearings are analyzed.The performance parameters calculated include the minimum film thickness,the highest temperature,and the maximum thermal deformation and maximum elastic deformation.The results indicate that the maximum thermal deformation is more sensitive to changes in rotational speed and load,the maximum thermal deformation increases with the increase of rotational speed and load.The maximum elastic deformation is more sensitive to changes in load and elastic modulus,the maximum elastic deformation increases proportionally with the increase of load.The decrease in maximum elastic deformation is significant with the increase of elastic modulus.
分 类 号:TH117[机械工程—机械设计及理论]
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