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基于摩擦影响的圆柱滚子轴承温度场分析

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以圆柱滚子轴承为研究对象,采用ANSYS Workbench软件对其进行静力学分析得到滚动体在不同位置与内滚道的接触应力;采用ADAMS软件对其进行动力学分析得到滚动体在不同位置与内滚道的摩擦力与正压力,进而通过Workbench分析得到滚子与内滚道的接触应力。根据静力学分析和动力学分析得到的接触应力分别求得轴承内部的摩擦热量,分析轴承的温度场。结果表明:轴承最高温出现在径向方向最下端的滚子与内滚道接触的位置;摩擦热流量与对流换热系数是影响轴承温度的2个主要因素;基于动力学得到的轴承温度场分布更加符合实际情况。
Analysis of Temperature Field of Cylindrical Roller Bearing Based on Friction Effect
Taking cylindrical roller bearing as the object of study,the contact stress of rolling element in different posi?tions within the inner rolling raceway was obtained by static analysis with using Workbench ANSYS software. The roller friction and positive pressure of rolling element in different positions within the inner rolling raceway were obtained by dy?namic analysis with using ADAMS software,and the contact stress of roller and inner raceway was obtained through the Workbench analysis.According to the contact stress obtained by static analysis and dynamic analysis,the internal friction heat of the bearing was obtained,and the temperature field of the bearing was analyzed. The results show that the highest temperature in the bearing occurs in the radial direction at the lowest end of the roller contact with the inner roll channel. The friction heat flux and the convection heat transfer coefficient are two main factors that affect the temperature of the bearing.The temperature distribution of the bearing based on the dynamics is more realistic.

cylindrical roller bearingfrictiontemperature fieldfriction heat flux

李宝良、王慧颖、毕琳

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大连交通大学机械工程学院 辽宁大连116028

圆柱滚子轴承 摩擦 温度场 摩擦热流量

大连市IT优秀教师基金

2008IT40111

2016

润滑与密封
中国机械工程学会 广州机械科学研究院有限公司

润滑与密封

CSTPCDCSCD北大核心
影响因子:0.478
ISSN:0254-0150
年,卷(期):2016.41(3)
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