牵引电机设计与增材制造的各向异性粘结磁体的权衡

V. Rallabandi, Shajjad Chowdhury, Himel Barua, M. Paranthaman, Mostak Mohammad, Steve Bullock, E. Cousineau
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引用次数: 0

摘要

基于挤压的大面积增材制造(BAAM)先前已被证明用于制造致密各向异性粘结磁体。这篇论文报告了当这种磁铁被用于电动汽车应用的电机时的设计权衡。以无镝烧结磁体设计的外转子分数槽永磁同步电机为基准,其峰值功率为100kW,连续功率为50kW。评估了使用粘结BAAM磁铁对电机和逆变器体积、电机损耗和冷却系统以及退磁余量的影响。研究发现,尽管由于BAAM磁体的能量积较低,电机功率密度降低,但还有其他系统层面的好处,包括冷却系统要求的降低、逆变器额定和体积的降低、短路电流的减少和退磁残留的改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Traction motor design trade-offs with additively manufactured anisotropic bonded magnets
Extrusion based big area additive manufacturing (BAAM) has been previously demonstrated for the fabrication of dense anisotropic bonded magnets. This paper reports on design trade-offs when such magnets are employed in a motor designed for electric vehicle applications. An external rotor fractional slot permanent magnet synchronous machine designed with sintered dysprosium free magnets rated for 100kW peak and 50kW continuous power is used as the baseline. The impact of using the bonded BAAM magnets on the motor and inverter volumes, motor loss and cooling systems as well as demagnetization margins is evaluated. It is found that although the motor power density reduces due to the lower energy product of the BAAM magnets, there are other system level benefits including reductions in the cooling system requirement, lower inverter rating and volume, decrease in short circuit current and improved demagnetization marains.
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