Study on nonlinear stiffness of rolling ball bearing under varied operating conditions

Yamin Li, Hongru Cao, Yongsheng Zhu
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引用次数: 3

Abstract

Nonlinear stiffness of rolling bearing is the root cause of the nonlinearity of a bearing rotor system. In this paper, bearing stiffness is calculated with a complete model for angular contact ball bearing. The bearing stiffness matrix is then integrated with finite element model of a rotor to study the nonlinear stiffness of rolling bearings. Calculated results are compared with the results of FAG's online tool (BearinX®) and experiments as well. The good agreements show the accuracy of the presented model. Based on the model of a two-bearing rotor system, the variations of bearing stiffness are studied from three aspects, i.e., external axial forces effects, external radial forces effects, and high speed effects, which may provide theoretical proofs for the study of bearing rotor systems.
不同工况下滚动球轴承非线性刚度研究
滚动轴承的非线性刚度是导致轴承转子系统非线性的根本原因。本文用角接触球轴承的完整模型计算了轴承刚度。然后将轴承刚度矩阵与转子有限元模型相结合,研究滚动轴承的非线性刚度。计算结果与FAG在线工具(BearinX®)和实验结果进行了比较。良好的一致性表明了所提模型的准确性。基于双轴承转子系统模型,从轴向外力、径向外力和高速效应三个方面研究了轴承刚度的变化,为轴承转子系统的研究提供了理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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