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Optimization of Repulsive Passive Magnetic Bearings

机译:斥力无源磁轴承的优化

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Passive magnetic bearings are an attractive alternative to conventional ball bearings in applications where wear and tear must be minimal and cost or construction restrictions ban the use of active magnetic bearings. They also find applications as miniaturized high-speed bearings where no other low-friction solutions are available. We show that, for a given cylindrical construction volume, an optimized repulsive bearing design with respect to a maximal radial stiffness can be found. This optimal configuration is independent of the aspect ratio of the bearing, but is determined by the width of the air gap between rotor and stator. Our method can determine the optimal configuration for any bearing geometry. We develop a design for a miniaturized high-speed bearing as an example.
机译:在必须将磨损降至最低且成本或结构限制禁止使用主动磁轴承的应用中,被动磁轴承是传统球轴承的一种有吸引力的替代选择。他们还发现了应用在没有其他低摩擦解决方案的小型高速轴承中。我们表明,对于给定的圆柱构造体积,可以找到关于最大径向刚度的优化斥力轴承设计。该最佳配置与轴承的纵横比无关,但由转子和定子之间的气隙宽度决定。我们的方法可以确定任何轴承几何形状的最佳配置。我们以微型高速轴承的设计为例。

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