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Design and Mechanical Property Analysis of Permanent Magnet Spring with Attractive Force used in PMSM with a Conical Rotor

机译:具有锥形转子PMSM具有吸引力的永磁弹簧的设计与力学性能分析

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To balance the axial force of a permanent magnet synchronous motor with a conical rotor (CR-PMSM) between the stator and the rotor, a permanent magnet (PM) spring with attractive force is designed. The magnetic circuit method is adopted to calculate the effective air-gap permeance, flux linkage and flux density. Then the magnetic force in axial direction is calculated by the virtual displacement method. The theoretical model of magnetic force – deformation is established to reveal the impact of different configurations adjustments on magnetic field distribution and stiffness coefficient. The static performance of the PM spring are analyzed by theoretical model and 2-D axial symmetry model of finite element method (FEM). A prototype of the PM spring is designed and manufactured together with the CR-PMSM. The simulation and experimental results show that the designed PM spring can meet the technical specification of axial force requirement of the CR-PMSM.
机译:为了在定子和转子之间用锥形转子(CR-PMSM)之间的永磁同步电动机的轴向力,设计具有吸引力的永磁体(PM)弹簧。 采用磁路法计算有效的气隙渗透,助焊剂连杆和助焊剂密度。 然后通过虚拟位移方法计算轴向方向上的磁力。 建立了磁力变形的理论模型,揭示了不同配置调整对磁场分布和刚度系数的影响。 通过有限元方法(FEM)的理论模型和2-D轴对称模型分析PM弹簧的静态性能。 PM弹簧的原型与CR-PMSM一起设计和制造。 模拟和实验结果表明,设计的PM弹簧可以满足CR-PMSM轴向力要求的技术规范。

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