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Modeling and Dynamic Analysis of Spherical Roller Bearing with Localized Defects: Analytical Formulation to Calculate Defect Depth and Stiffness

机译:球形滚子轴承用局部缺陷的建模与动态分析:分析配方计算缺陷深度和刚度

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摘要

Since spherical roller bearings can carry high load in both axial and radial direction, they are increasingly used in industrial machineries and it is becoming important to understand the dynamic behavior of SRBs, especially when they are affected by internal imperfections. This paper introduces a dynamic model for an SRB that includes an inner and outer race surface defect. The proposed model shows the behavior of the bearing as a function of defect location and size. The new dynamic model describes the contact forces between bearing rolling elements and race surfaces as nonlinear Hertzian contact deformations, taking radial clearance into account. Two defect cases were simulated: an elliptical surface on the inner and outer races. In elliptical surface concavity, it is assumed that roller-to-race-surface contact is continuous as each roller passes over the defect. Contact stiffness in the defect area varies as a function of the defect contact geometry. Compared to measurement data, the results obtained using the simulation are highly accurate.
机译:由于球形滚子轴承可以在轴向和径向方向上携带高负荷,因此它们越来越多地用于工业机械,了解SRB的动态行为变得重要,特别是当它们受内内缺陷的影响时。本文介绍了包括内部和外圈表面缺陷的SRB的动态模型。所提出的模型显示轴承的行为作为缺陷位置和尺寸的函数。新的动态模型描述了轴承滚动元件和血管表面之间的接触力作为非线性偏振触点变形,考虑到径向间隙。模拟了两个缺陷案例:内部和外部比赛的椭圆形表面。在椭圆形表面凹面中,假设每个辊通过缺陷时,滚子到血管表面接触是连续的。缺陷区域的接触刚度随着缺陷接触几何形状而变化。与测量数据相比,使用模拟获得的结果非常精确。

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