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Novel magnetizing technique using high temperature superconducting bulk magnets for permanent magnets in interior permanent magnet rotors

机译:用于内部永磁转子中的高温超导块磁体的新型磁化技术

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摘要

A novel magnetizing technique for permanent magnets (PMs) embedded in interior permanent magnet (IPM) motors has been proposed as a safer and more effective process than the conventional processes using copper pulse-coils. In the new process, the high temperature superconducting (HTS) bulk magnet, emitting an intense magnetic field of over 3 T, was employed to activate the rotor and PMs inside. A magnetic pole containing the HTS bulk magnet was scanned on the surface of the IPM rotor, resisting against the extremely strong attractive force between the magnet and rotor. Following experiments in the past, numerical simulation studies have been conducted to evaluate the magnetic field-trapping performances of the PMs. In this study, the numerical analysis of the magnetization behaviours was conducted for the PMs embedded in the rotor of the commercial air-conditioner motor in a hybrid car. The simulation results showed us that the demagnetized Nd-Fe-B plates in the rotor were fully magnetized in the intense static magnetic fields on the magnetic pole containing the HTS bulk magnet. The magnetizing behaviour in this peculiar magnetizing operation was made understandable by estimating the anisotropic easy-direction of the PM plates embedded in the rotor. The novel activation method for PM is characterized as a no-shock and no-heating method, which would promote the degree of freedom in the IPM motor design.
机译:已经提出了一种用于内部永磁体(IPM)电动机的永磁体(PMS)的新型磁化技术,其是比使用铜脉冲线圈的传统过程更安全和更有效的过程。在新工艺中,采用高温超导(HTS)散装磁铁,发射​​超过3T的强磁场,以激活转子和PM。在IPM转子的表面上扫描包含HTS散装磁体的磁极,抵抗磁体和转子之间的极其强烈的吸引力。在过去的实验之后,已经进行了数值模拟研究以评估PMS的磁场捕获性能。在该研究中,对杂交车中的商用空调电动机转子嵌入的PM进行了磁化行为的数值分析。仿真结果表明,转子中的退磁ND-Fe-B板在包含HTS散装磁体的磁极上的强静态磁场中完全磁化。通过估计嵌入转子中的PM板的各向异性易方向来理解该特殊磁化操作中的磁化行为。 PM的新型活化方法的特征在于无冲击和无加热方法,这将促进IPM电机设计中的自由度。

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