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Stability and Performance Analysis of Electrodynamic Thrust Bearings ?

机译:电动推力轴承的稳定性和性能分析?

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摘要

Electrodynamic thrust bearings (EDTBs) provide contactless rotor axial suspension through electromagnetic forces solely leaning on passive phenomena. Lately, linear state-space equations representing their quasi-static and dynamic behaviours have been developed and validated experimentally. However, to date, the exploitation of these models has been restricted to basic investigations regarding the stiffness and the rotational losses as well as qualitative stability analyses, thus not allowing us to objectively compare the intrinsic qualities of EDTBs. In this context, the present paper introduces four performance criteria directly related to the axial stiffness, the bearing energy efficiency and the minimal amount of external damping required to stabilise the thrust bearing. In addition, the stability is thoroughly examined via analytical developments based on these dynamical models. This notably leads to static and dynamic conditions that ensure the stability at a specific rotor spin speed. The resulting stable speed ranges are studied and their dependence to the axial external stiffness as well as the external non-rotating damping are analysed. Finally, a case study comparing three topologies through these performance criteria underlines that back irons fixed to the windings are not advantageous due to the significant detent force.
机译:电动推力轴承(EDTBS)通过单独倾斜被动现象的电磁力提供非接触式转子轴向悬架。最近,已经通过实验开发并验证了代表其准静态和动态行为的线性状态空间方程。然而,迄今为止,这些模型的开发仅限于关于刚度和旋转损失以及定性稳定性分析的基本调查,因此不允许我们客观地比较EDTB的内在质量。在这种情况下,本文介绍了与轴向刚度,轴承能效和稳定推力轴承所需的轴承能效和外部阻尼量的四种性能标准。此外,通过基于这些动态模型的分析开发彻底检查稳定性。这显着导致静态和动态条件,确保在特定转子旋转速度下的稳定性。研究了所得到的稳定速度范围,分析了它们对轴向外刚度以及外部不旋转阻尼的依赖性。最后,通过这些性能标准比较三个拓扑的案例研究强调,由于显着的制动力,固定到绕组的背部铁杆是不利的。

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