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Interaction magnetic field formulation of permanent magnets based on Baker's rotational magnetic propulsion device

机译:基于面包架旋转磁力推进装置的永磁体相互作用磁场制剂

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摘要

This paper presents a semi-analytical approach for calculating the magnetic interaction field between two permanent magnets based on Baker's rotational magnetic propulsion device. A theoretical formulation of the configuration is derived and solved numerically in order to obtain the interaction magnetic field between cuboidal permanent magnets based on the charge model method. A simple case is considered where the magnets are made of the same material and magnetised uniformly along their axes of symmetry. Numerical solution of the analytical system of equations permits proposing a configuration for a permanent magnet motor having the proper combination of materials, geometry and magnetic concentration. This configuration is capable of ensuring three aspects: a self-starting nature, continuity of the magnetic field, and overcoming of the lock-point. Finally, part of the permanent magnet motor is constructed and tested. Experimental results are in accordance with numerical results confirming the self-starting nature and overcoming of the lock-point.
机译:本文介绍了一种半分析方法,用于基于面包师旋转磁力推进装置计算两个永磁体之间的磁相互作用场。根据电荷模型方法,在数值上衍生和解决配置的理论配方,以便在立方体永磁体之间获得相互作用磁场。考虑一种简单的情况,其中磁体由相同的材料制成并且沿着它们的对称轴均匀地磁化。方程分析系统的数值解允许提出具有适当组合材料,几何和磁浓度的永磁电动机的配置。该配置能够确保三个方面:磁场的自启动性,连续性,以及锁定点的克服。最后,构造和测试了一部分永磁电机。实验结果符合数值结果,证实了锁定点的自启动性质和克服。

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