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A fault dynamic model of high-speed angular contact ball bearings

机译:高速角接触球轴承的故障动态模型

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摘要

Angular contact ball bearings (ACBBs) are widely used in rotary machines especially in high-speed rotating machines because of their excellent properties. However, the traditional dynamic model of a rolling bearing is mainly applied to simulate the dynamic response at low speed, and uses the simple displacement excitation function to characterize the fault, thus its accuracy will decrease under high speed condition. Aiming at the shortcomings of the traditional model, a new high-speed fault dynamic model of ACBB is proposed by considering the influences of centrifugal force, gyroscopic moment and time-varying contact angles on the rolling element under high-speed running and using a B-spline fitting displacement excitation method to represent the fault excitation. With this model, high-speed dynamic responses under different fault sizes and rotation speeds are calculated by the Runge-Kutta method and Newton-Raphson method. Then the corresponding time and frequency domain characteristics are analyzed. From the simulation results, it can be seen that all the simulated acceleration signals of ACBBs are more in line with the actual situation than the traditional model, especially for the shape of an impulse. Finally, the effectiveness and correctness of the proposed model are verified by the experiment on aero-engine spindle bearings. (C) 2019 Elsevier Ltd. All rights reserved.
机译:角接触球轴承(ACBBs)广泛用于旋转机器,尤其是高速旋转机器,因为它们具有优异的性能。然而,滚动轴承的传统动态模型主要应用于以低速模拟动态响应,并使用简单的位移励磁功能来表征故障,因此其精度在高速条件下降低。旨在通过考虑离心力,陀螺仪矩和时变接触角度在高速运行和使用B时,提出了一种新的ACBB的新高速故障动态模型的新型高速故障动态模型。 -Spline拟合位移励磁方法代表故障激励。通过该模型,通过跳动-Kutta方法和牛顿-Raphson方法计算不同故障尺寸和旋转速度下的高速动态响应。然后分析相应的时间和频域特征。从仿真结果来看,可以看出ACBB的所有模拟加速信号与传统模型的实际情况相得益彰,特别是对于脉冲的形状。最后,通过在航空发动机主轴轴承的实验验证了所提出的模型的有效性和正确性。 (c)2019年elestvier有限公司保留所有权利。

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