首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part K, Journal of Multi-body Dynamics >Influence of rotational speed on the impact characteristics caused by a localized defect of the outer raceway in a ball bearing under an axial load
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Influence of rotational speed on the impact characteristics caused by a localized defect of the outer raceway in a ball bearing under an axial load

机译:轴向载荷下滚珠轴承外滚道局部缺陷引起的旋转速度对滚动型造成的影响

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摘要

The rotational speed is a crucial parameter for bearing condition monitor. The present study shows the influence of the rotational speed on the impact characteristics caused by a localized defect of the outer raceway. A 2N(b) + 5-degrees-of-freedom nonlinear dynamic model for a ball bearing is developed. The waviness of bearing components, a localized defect of the outer raceway, and the centrifugal forces of balls caused by rotational speed are involved in the ball bearing model. Spectral kurtosis (SK) analysis and envelope spectrum analysis are used to extract the impact signal and confirm the position of the optimal frequency band affected by the impact signal. The peak of the impact signal rises with the increase in rotational speed. The position of the optimal frequency band affected by the impact signal is a linear piecewise function of the rotational speed. These simulated results are verified through vibration experiments of a ball bearing with a localized defect of the outer raceway under an axial load. In addition, considering both a localized defect on the outer raceway and the waviness of bearing components, only when the size of the localized defect is large enough, can the impact signal overcome the influence of the structural vibration of the system to extract impact characteristics. The case studies of high-speed spindle bearing state diagnosis show that high speed is not conducive to the extraction of the impact characteristics.
机译:转速是轴承状态监测器的关键参数。本研究表明了旋转速度对由外滚道的局部缺陷引起的影响特性的影响。开发了用于滚珠轴承的2N(b)+ 5度的非线性动态模型。轴承部件的波纹,外滚道的局部缺陷,以及由转速引起的球的离心力涉及滚珠轴承模型。光谱峰(SK)分析和包络频谱分析用于提取冲击信号并确认受冲击信号影响的最佳频带的位置。冲击信号的峰值随着转速的增加而上升。受冲击信号影响的最佳频带的位置是转速的线性分段功能。这些模拟结果通过滚珠轴承的振动实验验证,该振动实验在轴向载荷下具有外滚道的局部缺陷。此外,考虑到外滚道上的局部缺陷和轴承部件的波纹,只有当局部缺陷的尺寸足够大时,冲击信号都可以克服系统的结构振动的影响,以提取冲击特性。高速主轴轴承状态诊断的案例研究表明,高速不利于冲击特性的提取。

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