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Vibration signature analysis of a high speed rotor supported on ball bearings due to localized defects

机译:由于局部缺陷而导致支撑在球轴承上的高速转子的振动特征分析

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This paper presents the vibration signature analysis of the high speed rolling element bearings due to localized defects with an un-cracked and a cracked rotor. In rotating machines, one of the main causes of breakdown is faults in ball bearings and crack in rotors. Thus, accurate prediction of severe vibration conditions and characteristic defect frequencies is crucial for the reliable operation. A test rig of a high speed rotor supported on healthy and defective ball bearings is used. The vibration response is obtained and analyzed for the un-cracked and cracked rotor with and without defects on bearing components. The defects such as spalls on the outer race, inner race and on the rolling elements are considered for the study. Combined parametric effects have been analyzed to predict the dynamic response of a rotor-bearing system using response surface method. It is also observed that the severe vibrations occur under bearings with spall on the inner race surface and on a ball under high speed rotor condition.
机译:本文介绍了由于无裂纹和裂纹转子的局部缺陷而导致的高速滚动轴承的振动特征分析。在旋转机械中,引起故障的主要原因之一是滚珠轴承故障和转子裂纹。因此,准确预测严重的振动条件和特征缺陷频率对于可靠运行至关重要。使用在健康和有缺陷的球轴承上支撑的高速转子的试验台。获得并分析了在轴承部件上有无缺陷的无裂纹和裂纹转子的振动响应。研究中考虑了外圈,内圈和滚动元件上的剥落等缺陷。分析了组合参数效应,以使用响应面法预测转子轴承系统的动态响应。还可以观察到,在高速转子条件下,内圈表面和滚珠上带有剥落的轴承会发生剧烈振动。

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