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Axial Flux Machine Using Passive Magnetic Bearing with Axial Magnetization

机译:带有轴向磁化的被动磁轴承的轴向磁通机

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Decreasing the maintenance cost and power losses in Axial Flux Permanent Magnet machine using Passive Magnet Bearing instead of mechanical ball bearing is the purpose of this paper. Two structures of Passive Magnetic Bearing are applied, and the magnetic forces and stiffness are analyzed. The best structure is selected according to the safety, mechanical consistency and economical charges. A balance point is found where the magnetic force of Passive Magnetic Bearing and magnetic force between rotor and stator structure, neutralize each other. Also, magnetic forces are investigated according to the displacements of the middle ring in Passive Magnetic Bearing and according to different air gap width between rotor and stator in the motor. According to the symmetry of Axial Flux Permanent Magnet motor, the motor is modeled using three-dimensional finite-element method. On the other hand, based on the axial symmetry around z-axis in Passive Magnetic Bearing, the bearing is modeled using two-dimensional finite-element method. These simplifications will help the calculation of the magnetic force and stiffness in the least computation time.
机译:本文的目的是减少使用被动磁轴承代替机械滚珠轴承的轴向磁通永磁电机的维护成本和功率损耗。应用了被动磁轴承的两种结构,并分析了磁力和刚度。根据安全性,机械一致性和经济性选择最佳的结构。找到了一个平衡点,在该平衡点处,被动磁轴承的磁力与转子和定子结构之间的磁力相互抵消。另外,还根据被动式电磁轴承中的中间环的位移以及电动机中转子与定子之间的不同气隙宽度来研究磁力。根据轴向磁通永磁电动机的对称性,采用三维有限元方法对电动机进行建模。另一方面,基于无源电磁轴承中围绕z轴的轴对称性,使用二维有限元方法对轴承进行建模。这些简化将有助于在最短的计算时间内计算磁力和刚度。

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