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Fatigue Life Prediction for Large-Diameter Elastically Constrained Ball Bearings

机译:大直径弹性约束球轴承的疲劳寿命预测

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摘要

The application of large-diameter bearing rings and the thereof inherited low stiffness make them susceptible to local distortions caused by their surrounding structures, which are often under heavy loads. The standard accepted design criteria for these bearings are based on the estimation of the internal load distribution of the bearing, under the assumption of rigid circular and flat supporting structures, that keep the bearing inner and outer races in circular, flat, i.e., not deformed shapes. However, in the presence of structural distortions, the element load distribution can be severely altered and cannot be predicted via the standard design criteria. Therefore, the application of large-diameter ball and roller bearing rings as the critical components in rotating machines becomes more of a design task than making a catalog selection. The analytical and finite element approach for fatigue life prediction of such a bearing application is presented. The undertaken approach and the results are illustrated based on the analysis and fatigue life simulation of the computed tomography scanner's main rotor bearing. It has been demonstrated that flexibility of the rings can significantly reduce the fatigue life of the ball bearing.
机译:大直径轴承套圈的应用及其固有的低刚度使它们容易受到周围结构的局部变形的影响,而这种变形通常是在重载荷下进行的。这些轴承的公认设计标准是基于轴承的内部载荷分布的估计,在假定刚性圆形和扁平支撑结构的情况下,这些结构可使轴承的内圈和外圈保持圆形,扁平,即不变形。形状。但是,在存在结构变形的情况下,单元载荷分布可能会发生严重变化,并且无法通过标准设计标准进行预测。因此,将大直径的滚珠和滚子轴承套圈用作旋转机械中的关键部件,比选择目录更为重要。提出了一种用于此类轴承应用的疲劳寿命预测的解析和有限元方法。基于计算机断层扫描仪主转子轴承的分析和疲劳寿命仿真,说明了所采取的方法和结果。已经证明,套圈的柔韧性会显着降低滚珠轴承的疲劳寿命。

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