Halbach磁体阵列交叉耦合二自由度电机长度因子优化设计

Shodai Tanaka, T. Shimono, Y. Fujimoto
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引用次数: 18

摘要

介绍了一种交叉耦合二自由度电机的优化设计方法。一般来说,哈尔巴赫磁体阵列可以实现高磁负载。因此,采用哈尔巴赫磁体阵列可以获得更高的推力和扭矩。所提出的电机有一个轴,永磁体,螺旋绕组,和两个轴。该结构可以独立实现直线运动和旋转运动。电机部分由轴和永磁体组成,永磁体呈段状,沿径向或轴向磁化。轴向与轴向交替放置两种磁体(轴向磁化和径向磁化)。通过确定长度因子,即两种磁体的长度之比,可以求出最大推力和最大转矩。本文通过改变磁体的长度因子并进行有限元分析,验证了优化设计的正确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal design of length factor for cross-coupled 2-DOF motor with Halbach magnet array
This paper introduces an optimal design for a cross-coupled two-degree-of-freedom (2-DOF) motor. Generally, Halbach magnet array can realize high magnetic loading. Therefore, higher thrust force and torque will be obtained by employing Halbach magnet array. The proposed motor has a shaft, the permanent magnets, helical windings, and two bobbins. This structure can independently realize linear and rotary motions. Also, the mover part is constituted of the shaft and the permanent magnets which are segment shape and magnetized to the radial or the axial direction. Two kinds of magnets (magnetizations of axial and radial directions) are alternately placed at the shaft to axial direction. By determining the length factor which is the ratio between lengths of two kinds of magnets, the maximum thrust force and maximum torque will be found. In this paper, the optimal design is verified by varying the length factor of these magnets and performing the finite element analysis (FEA).
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