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Design and Analysis on the Novel Uncoupled Six-pole Three-Degree-of-Freedom Hybrid Magnetic Bearing

机译:新型六极三维自由度混合磁轴承的设计与分析

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To eliminate the control flux coupling and improve the suspension performance of the three degrees of freedom (3-DOF) hybrid magnetic bearing (HMB), a novel three degrees of freedom hybrid magnetic bearing with independent radial magnetic circuit is proposed. In the novel three degrees of freedom hybrid magnetic bearing, the stator is composed of three cores with two poles. Firstly, the configuration and suspension principle are introduced. Secondly, the equivalent bias and control magnetic circuits are established. The force-current relationships are derived. According to the given radial and axial bearing capacity, the main parameters of the prototype are designed. Finally, the three-dimensional finite element method is used to verify the correctness of the structure, suspension mechanism and mathematical models.
机译:为了消除控制通量耦合并改善三个自由度(3-DOF)混合磁轴承(HMB)的悬架性能,提出了一种具有独立径向磁路的三个自由式混合磁轴承。在新型三个自由式混合磁轴承中,定子由三个具有两个杆的三个芯组成。首先,介绍了配置和悬架原理。其次,建立了等效的偏压和控制磁路。导出力 - 电流关系。根据给定的径向和轴向承载力,设计了原型的主要参数。最后,三维有限元方法用于验证结构,悬架机构和数学模型的正确性。

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