Fault diagnosis based on nonlinear dynamic modeling in rolling element bearing systems

Xiang Li, Yongsheng Zhu, Zhiheng Zhou, Ning Wang
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引用次数: 7

Abstract

In order to diagnose the location and size of fault in rolling element bearing system accurately, two-DOF dynamic model and six-DOF dynamic model of fault bearings are built and compared with each other based on the generation mechanism of bearing fault. The models not only consider the influencing factors of variable stiffness caused by bearing clearance, but also introduce a unit resonator to simulate high frequency inherent vibration arising with the bearing fault in sixDOF dynamic model. Dynamic models of localised fault on outer race, inner race and rolling element of rolling element bearing are simulated and analyzed by using Runge-Kutta method. The simulating results are in accordance with experimental results, which proves the accuracy and practicality of the models used in engineering application.
基于非线性动态建模的滚动轴承系统故障诊断
为了准确诊断滚动体轴承系统故障的位置和大小,根据轴承故障的产生机理,建立了故障轴承的二自由度动态模型和六自由度动态模型,并进行了比较。该模型不仅考虑了轴承间隙引起的变刚度的影响因素,而且在六自由度动力学模型中引入了单元谐振器来模拟轴承故障引起的高频固有振动。采用龙格-库塔法对滚动轴承外滚圈、内滚圈和滚动体局部故障的动态模型进行了仿真分析。仿真结果与实验结果吻合较好,证明了所建模型在工程应用中的准确性和实用性。
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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