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Simulation and experimental validation of a 9 ton AMB rotor landing in rolling element back-up bearings

机译:滚动轴承支承轴承中9吨AMB转子着陆的仿真和实验验证

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Backup Bearings (BuB) must be designed to withstand the shock loads which occur during impacts with heavy and/or high-speed rotors. Both experimental testing and transient dynamic simulation are necessary for the study of BuB performance. This paper presents the transient dynamic simulation methodology developed within SIEMENS for the study of full-scale rotor landings in rolling element BuBs. The developed models were validated with a substantial landing program led and performed by SIEMENS, whose objective was to qualify the safe operation of hybrid rolling element BuBs for an industrial application utilizing an AMB-levitated 9 ton supercritical motor. The paper describes the BuB model, summarizes the simulation results and offers a comparison to experimental measurements from the aforementioned successful landing tests program.
机译:备用轴承(BuB)的设计必须能够承受重型和/或高速转子撞击时产生的冲击载荷。对于BuB性能的研究,必须进行实验测试和瞬态动态仿真。本文介绍了西门子内部开发的瞬态动态仿真方法,用于研究滚动元件BuB中的满量程转子着陆。所开发的模型已通过西门子牵头并执行的一项重大着陆计划进行了验证,其目标是使混合滚动元件BuB的安全运行符合使用AMB悬浮9吨超临界电动机的工业应用的要求。本文介绍了BuB模型,总结了仿真结果,并与上述成功着陆测试程序中的实验测量结果进行了比较。

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