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3D Analytical Computation of the Torque in Axial Flux Permanent Magnets Couplings Based on Charges Model and Images Method

机译:基于电荷模型和图像方法的轴向磁通永磁体轴承扭矩的3D分析计算

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This paper presents a simple and accurate 3D analytical expressions to compute the force and torque of an axial flux magnetic couplings (AFMC) based on the equivalent magnetic charges and the images method. The proposed model is formulated and solved in a 3D Cartesian coordinate system by considering the assumption of linearization around the mean radius. Firstly, the magnetic flux density due to the cubic permanent magnets (PM), of one side of the magnetic coupling, is computed in 3D considering the magnetic end effects where the iron yokes influence is considered thanks to the images method. Secondly, the force and the torque among the magnets located in the opposite sides are obtained using the analogy between the electrostatic and magnetostatic forces. The derived analytical expressions depend directly on the geometrical and physical parameters of the AFMC. The analytical results are compared to those obtained with finite element simulation and experimental measurements.
机译:本文介绍了一种简单且精确的3D分析表达式,以基于等效磁电荷和图像方法计算轴向磁通磁耦合(AFMC)的力和扭矩。通过考虑在平均半径周围的线性化的假设,在3D笛卡尔坐标系中配制和解决了所提出的模型。首先,考虑到磁耦合的一侧的一侧的立方永磁体(PM)的一侧是考虑到铁轭影响的磁耦合的一侧的磁磁通密度。其次,使用静电和静静压之间的类比,获得位于相对侧的磁体中的力和扭矩。导出的分析表达式直接取决于AFMC的几何和物理参数。将分析结果与具有有限元模拟和实验测量获得的分析结果进行比较。

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