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Fatigue Life Analysis of Rolling Bearings Based on Quasistatic Modeling

机译:基于Quasistatic建模的滚动轴承疲劳寿命分析

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摘要

Rolling bearings are widely used in aeroengine, machine tool spindles, locomotive wheelset, and so forth. Rolling bearings are usually the weakest components that influence the remaining life of the whole machine. In this paper, a fatigue life prediction method is proposed based on quasistatic modeling of rolling bearings. With consideration of radial centrifugal expansion and thermal deformations on the geometric displacement in the bearings, the Jones’ bearing model is updated, which can predict the contact angle, deformation, and load between rolling elements and bearing raceways more accurately. Based on Hertz contact theory and contact mechanics, the contact stress field between rolling elements and raceways is calculated. A coupling model of fatigue life and damage for rolling bearings is given and verified through accelerated life test. Afterwards, the variation of bearing life is investigated under different working conditions, that is, axial load, radial load, and rotational speed. The results suggested that the working condition had a great influence on fatigue life of bearing parts and the order in which the damage appears on bearing parts.
机译:滚动轴承广泛用于航空发动机,机床主轴,机车轮等。滚动轴承通常是影响整机剩余寿命的最薄弱部件。本文基于滚动轴承的Quasistatic建模提出了一种疲劳寿命预测方法。考虑到轴承中的几何位移上的径向离心膨胀和热变形,更新了琼斯的轴承模型,可以更准确地预测滚动元件和轴承滚道之间的接触角,变形和负载。基于赫兹接触理论和接触力学,计算滚动元件与滚道之间的接触应力场。通过加速寿命测试给出并验证了疲劳寿命和滚动轴承损坏的耦合模型。然后,在不同的工作条件下研究轴承寿命的变化,即轴向载荷,径向载荷和转速。结果表明,工作条件对轴承部件的疲劳寿命产生了很大影响,以及损坏出现在轴承部件上的顺序。

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