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Vibration characteristics of a rotor system in contact with a backup bearing: Cases with various failure patterns of the active magnetic bearing

机译:与备用轴承接触的转子系统的振动特性:主动电磁轴承的各种故障模式的案例

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摘要

When electric power for an active magnetic bearing ( AMB) is shut down during operation, the backup bearing plays an important role in stopping the rotor system safely. Recently, a flexible high-speed rotor supported by an AMB, operating above the first and second critical speeds, has been investigated. In this context, the vibration characteristics of the flexible high-speed rotor when interacting with the backup bearing system become important. In this article, the mathematical models for the contact and friction forces which exist during contact between the rotor and the backup bearing are considered, the rotation of the inner ring of the backup bearing is modelled, and the vibration characteristics of the rotor system are studied. By comparing the results of numerical simulations and experiments, the validity of the mathematical model of the backup bearing is confirmed. Moreover, the vibration characteristics of the rotor systems when various types of failures occur in the AMB are clarified both theoretically and experimentally.
机译:在运行过程中关闭主动式电磁轴承(AMB)的电源时,备用轴承在安全地停止转子系统方面起着重要作用。近来,已经研究了由AMB支撑的柔性高速转子,其在第一和第二临界速度以上运转。在这种情况下,与备用轴承系统相互作用时,柔性高速转子的振动特性就变得很重要。本文考虑了转子与备用轴承接触时存在的接触力和摩擦力的数学模型,对备用轴承内圈的旋转进行了建模,研究了转子系统的振动特性。通过比较数值模拟和实验结果,证实了备用轴承数学模型的有效性。此外,在理论上和实验上都阐明了当AMB中发生各种类型的故障时转子系统的振动特性。

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