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Novel Multi-layer Design and Additive Manufacturing Fabrication of a High Power Density and Efficiency Interior PM Motor

机译:高功率密度和效率的内部永磁电机的新型多层设计和增材制造工艺

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This paper presents a novel interior Permanent Magnet (PM) motor design with alternate layers of PM and Soft Magnetic Composite (SMC) designed and optimized according to the specifications of a Hybrid Electric Vehicle (HEV) traction motor. The Finite Element Analysis (FEA) simulations show that the optimized layered design can achieve a higher efficiency and a similar torque density compared to a commercial interior PM motor, while using a PM material with 40% of the remnant flux density. The proposed configuration can be fabricated using cold spray Additive Manufacturing (AM) allowing the layered rotor structure to have higher mechanical strength that can enable the motor operation at higher speeds achieving 50% higher power density or more.
机译:本文介绍了一种新颖的内部永磁体(PM)电机设计,该结构具有交替的PM层和根据混合动力电动汽车(HEV)牵引电机规范进行了优化设计的软磁复合材料(SMC)。有限元分析(FEA)仿真表明,与商用内部永磁电机相比,优化的分层设计可以实现更高的效率和类似的扭矩密度,同时使用具有40%剩余磁通密度的PM材料。可以使用冷喷涂增材制造(AM)来制造建议的配置,从而使分层转子结构具有更高的机械强度,从而可以使电机以更高的速度运行,从而实现50%或更高的功率密度。

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