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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Stability of a four-degree-of-freedom rotor on homopolar electrodynamic passive magnetic bearings
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Stability of a four-degree-of-freedom rotor on homopolar electrodynamic passive magnetic bearings

机译:同极性电动无源磁轴承上四自由度转子的稳定性

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摘要

Electrodynamic bearings exploit repulsive forces due to eddy currents to produce positive stiffness by passive means without violating the Earnshaw stability criterion. This remarkable characteristic makes this type of bearing a suitable alternative to other contactless bearing technologies in applications where active control is not strictly necessary, such as kinetic energy storage flywheels, turbo pumps, high-speed compressors, among others. However, the suspension can become unstable due to rotating damping. To obtain deeper understanding of this instability phenomenon the present paper presents the analysis of stability of a four-degree-of-freedom (4dof) rotor supported by homopolar electrodynamic bearings. The 4dof rotor model is coupled to the dynamic model of the eddy current forces generated by the electrodynamic bearing and the stability of the complete system is analyzed. This model is used to study the stability of cylindrical and conical whirling motions of the rotor. In addition to the well-known cylindrical whirl instability the possible occurrence of conical instability is demonstrated. Finally the effects of two stabilization strategies are analyzed.
机译:电动轴承利用涡流产生的排斥力通过被动方式产生正刚度,而不会违反Earnshaw稳定性标准。这种非凡的特性使该类型的轴​​承成为非严格要求主动控制的应用(例如动能存储飞轮,涡轮泵,高速压缩机等)中其他非接触轴承技术的合适替代品。但是,由于旋转阻尼,悬架可能变得不稳定。为了更深入地了解这种不稳定性现象,本论文介绍了由同极电动轴承支撑的四自由度(4dof)转子的稳定性分析。将4dof转子模型与由电动轴承产生的涡流力的动力学模型耦合,并分析整个系统的稳定性。该模型用于研究转子的圆柱形和圆锥形旋转运动的稳定性。除了众所周知的圆柱形涡旋不稳定性之外,还证明了可能发生圆锥形不稳定性。最后,分析了两种稳定策略的效果。

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