首页> 外文期刊>Mechanical systems and signal processing >Analysis of bearing stiffness variations, contact forces and vibrations in radially loaded double row rolling element bearings with raceway defects
【24h】

Analysis of bearing stiffness variations, contact forces and vibrations in radially loaded double row rolling element bearings with raceway defects

机译:分析带有滚道缺陷的径向载荷双列滚动轴承的轴承刚度变化,接触力和振动

获取原文
获取原文并翻译 | 示例

摘要

A method is presented for calculating and analyzing the quasi-static load distribution and varying stiffness of a radially loaded double row bearing with a raceway defect of varying depth, length, and surface roughness. The method is applied to ball bearings on gearbox and fan test rigs seeded with line or extended outer raceway defects. When balls pass through the defect and lose all or part of their load carrying capacity, the load is redistributed between the loaded balls. This includes balls positioned outside the defect such that good raceway sections are subjected to increased loading when a defect is present. The defective bearing stiffness varies periodically at the ball spacing, and only differs from the good bearing case when balls are positioned in the defect. In this instance, the stiffness decreases in the loaded direction and increases in the unloaded direction. For an extended spall, which always has one or more balls positioned in the defect, this results in an average stiffness over the ball spacing period that is lower in the loaded direction in comparison to both the line spall and good bearing cases. The variation in bearing stiffness due to the defect produces parametric excitations of the bearing assembly. The qualitative character of the vibration response correlates to the character of the stiffness variations. Rapid stiffness changes at a defect exit produce impulses. Slower stiffness variations due to large wavelength waviness features in an extended spall produce low frequency excitation which results in defect components in the velocity spectra. The contact forces fluctuate around the quasi-static loads on the balls, with rapid stiffness changes producing high magnitude impulsive force fluctuations. Furthermore, it is shown that analyzing the properties of the dynamic model linearized at the quasi-static solutions provides greater insight into the time-frequency characteristics of the vibration response. This is demonstrated by relating the low frequency event that occurs when a ball enters a line spall to the dynamic properties of the bearing assembly.
机译:提出了一种计算和分析径向缺陷的双列轴承的准静态载荷分布和变化的刚度的方法,该双列轴承的滚道缺陷的深度,长度和表面粗糙度都不同。该方法适用于齿轮箱和风扇测试台上的滚珠轴承,这些轴承上有直线或延伸的外部滚道缺陷。当滚珠穿过缺陷并失去其全部或部分负荷承载能力时,负荷会在已加载的滚珠之间重新分配。这包括位于缺陷外部的滚珠,这样当存在缺陷时,良好的滚道部分会承受更大的载荷。不良的轴承刚度会在滚珠间距处周期性变化,只有当滚珠位于缺陷中时才与良好的轴承情况不同。在这种情况下,刚度在加载方向上减小而在未加载方向上增大。对于总是在缺陷中放置一个或多个滚珠的扩展剥落,与线路剥落和良好的轴承座相比,这导致在滚珠间隔期间的平均刚度在载荷方向上较低。由于缺陷导致的轴承刚度变化会产生轴承组件的参数激励。振动响应的定性特征与刚度变化的特征相关。缺陷出口处的刚度快速变化会产生脉冲。由于扩展剥落中的大波长波纹度特性而导致的较慢的刚度变化会产生低频激励,从而导致速度谱中的缺陷分量。接触力围绕球上的准静态载荷而波动,随着刚度的快速变化,产生很大的冲击力波动。此外,它表明,分析在准静态解中线性化的动力学模型的属性,可以更好地了解振动响应的时频特性。通过将球进入线裂时发生的低频事件与轴承组件的动态特性相关联,可以证明这一点。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号