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Experimental comparison of the nonlinear dynamic behavior of a rigid rotor interacting with two types of different radial backup bearings: Ball & pinned

机译:刚性转子与两种不同径向备用轴承相互作用的非线性动力学行为的实验比较:球和固定

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摘要

Rotors on magnetic bearings rely on external controls to guarantee stability and are designed in case of partial or total failures, when impacts happen and potentially lead to a breakdown. Therefore backup bearings are indispensable. In such rotor-stator interactions the main undesired phenomenon is the backward whirl. The current work investigates the experimental behavior of a horizontal rigid rotor interacting laterally with two types of backup bearings during run up testing. The experimental data is analyzed by orbit analysis, spectrum analyzers, and force magnitudes collected by sensors installed. It is shown experimentally the nonlinear behavior of the rotor-bearing system and the elimination of backward whirl. The advantages and drawbacks of each type of backup bearing are given.
机译:磁性轴承上的转子依靠外部控制来保证稳定性,并且在局部或完全失败的情况下设计,当冲击发生并可能导致击穿时。 因此,备用轴承是必不可少的。 在这种转子定子相互作用中,主要的不期望的现象是向后旋转。 目前的工作研究了水平刚性转子在运行测试期间用两种类型的备用轴承横向相互作用的实验性能。 通过轨道分析,频谱分析仪分析实验数据,并由安装的传感器收集的力幅度进行分析。 实验示出了转子轴承系统的非线性行为和后向旋转的消除。 给出了每种备用轴承的优点和缺点。

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