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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Dynamic Modeling and Vibration Response Simulation for High Speed Rolling Ball Bearings With Localized Surface Defects in Raceways
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Dynamic Modeling and Vibration Response Simulation for High Speed Rolling Ball Bearings With Localized Surface Defects in Raceways

机译:滚道局部表面缺陷的高速滚动球轴承的动力学建模和振动响应仿真

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摘要

A dynamic model is developed to investigate vibrations of high speed rolling ball bearings with localized surface defects on raceways. In this model, each bearing component (i.e., inner raceway, outer raceway and rolling ball) has six degrees of freedom (DOFs) to completely describe its dynamic characteristics in three-dimensional space. Gyroscopic moment, centrifugal force, lubrication traction/slip between bearing component are included owing to high speed effects. Moreover, local defects are modeled accurately and completely with consideration of additional deflection due to material absence, changes of Hertzian contact coefficient and changes of contact force directions due to raceway curvature variations. The obtained equations of motion are solved numerically using the fourth order Runge-Kutta-Fehlberg scheme with step-changing criterion. Vibration responses of a defective bearing with localized surface defects are simulated and analyzed in both time domain and frequency domain, and the effectiveness of fault feature extraction techniques is also discussed. An experiment is carried out on an aerospace bearing test rig. By comparing the simulation results with experiments, it is confirmed that the proposed model is capable of predicting vibration responses of defective high speed rolling ball bearings effectively.
机译:建立了一个动力学模型来研究在滚道上具有局部表面缺陷的高速滚动球轴承的振动。在此模型中,每个轴承组件(即内部滚道,外部滚道和滚动球)具有六个自由度(DOF),以完全描述其在三维空间中的动态特性。由于高速作用,包括了陀螺力矩,离心力,轴承部件之间的润滑牵引/滑动。而且,考虑到由于材料的缺乏,赫兹接触系数的变化以及滚道曲率变化引起的接触力方向的变化,还会产生额外的挠度,从而对局部缺陷进行精确而完整的建模。使用带有阶跃变化准则的四阶Runge-Kutta-Fehlberg方案对获得的运动方程进行数值求解。从时域和频域两方面对具有局部表面缺陷的缺陷轴承的振动响应进行了仿真和分析,并讨论了故障特征提取技术的有效性。实验是在航空航天轴承试验台上进行的。通过将仿真结果与实验结果进行比较,证实了该模型能够有效预测有缺陷的高速滚动球轴承的振动响应。

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