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Augmentation of passive magnetic bearing performance by using air or iron intervals

机译:通过使用空气或铁间隔增强被动磁性轴承性能

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Purpose This paper aims to suggest the use of air or iron intervals between axially magnetized rings to increase the forces and stiffness of permanent magnet passive magnetic bearings (PMBs). The paper calculates the stiffness of such bearings through an analytical method and optimizes the dimensions of the magnets for achieving maximum stiffness.Design/methodology/approach For determining the magnetic fields distribution, forces and stiffness of the bearings, a 2D analytical method is used, based on the subdomain method. For the sake of generalization, all of the parameters are normalized and optimized for maximum normalized stiffness per magnet volume ratio.Findings The optimum sizes of the magnets as well as the optimum dimensions of the air or iron intervals are calculated in this paper. The optimum sizes of the magnets are around the air gap length and it is very difficult to realize them. Using iron intervals can improve the stiffness to the extremely high values in practical dimensions of the magnets.Originality/value This paper presents a novel configuration for improving the performance of PMBs with alternately axially magnetized rings.
机译:目的本文旨在建议在轴向磁化的环之间使用空气或铁间隔,以增加永磁磁磁轴承(PMB)的力和刚度。本文通过分析方法计算了这种轴承的刚度,并优化了用于实现最大刚度的磁体的尺寸。用于确定磁场分布,轴承的力和刚度的磁体的尺寸,使用了一种2D分析方法,基于子域法。为了泛化,所有参数都被归一化并针对每个磁体比率的最大归一化刚度进行了优化。在本文中计算了磁体的最佳尺寸以及空气或铁间隔的最佳尺寸。磁体的最佳尺寸围绕气隙长度,并且非常难以实现它们。使用铁间隔可以在磁体的实际尺寸中提高到极高值的刚度。这些纸张具有新颖的配置,用于改善PMB的性能与交替轴向磁化的环。

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