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Fault Diagnosis of High Speed Rolling Element Bearings Due to Localized Defects Using Response Surface Method

机译:响应面法诊断高速滚动轴承局部缺陷的故障

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In this paper, fault diagnosis of high speed rolling element bearings due to localized defects using response surface method has been done. The localized defects as spalls on outer race, on inner race, and on rolling elements are considered for this study. The mathematical formulation accounted for tangential motions of rolling elements and inner and outer races with the sources of nonlinearity such as Hertzian contact force and internal radial clearance. The nonlinear stiffness is obtained by the application of Hertzian elastic contact deformation theory. The mathematical formulation predicts discrete spectrum having peaks at the characteristic defect frequencies and their harmonics. Experimentation has also been performed to validate the results obtained from the mathematical model and it shows that the model can be successfully used to predict amplitude ratios among various spectral lines with localized surface defects. Combined parametric effects have been analyzed and their influence has been considered with design of experiments and surface response methodology is used to predict the dynamic response of a rotor bearing system.
机译:本文利用响应面法对由于局部缺陷引起的高速滚动轴承的故障进行了诊断。本研究考虑了外圈,内圈和滚动元件上的剥落等局部缺陷。数学公式解释了滚动元件以及内外圈的切向运动以及非线性源,例如赫兹接触力和内部径向游隙。非线性刚度是通过应用赫兹弹性接触变形理论获得的。数学公式预测了在特征缺陷频率及其谐波处具有峰值的离散频谱。还进行了实验以验证从数学模型获得的结果,结果表明该模型可以成功地用于预测具有局部表面缺陷的各种光谱线之间的振幅比。分析了组合的参数效应,并通过实验设计考虑了它们的影响,并使用表面响应方法来预测转子轴承系统的动态响应。

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