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Cutting and Punching Impacts on Laminated Electromagnetic Steels to the Designs and Operations of Synchronous Reluctance Motors

机译:切割和冲孔对叠层电磁钢的影响,对同步磁阻电机的设计和运行产生影响

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摘要

This paper is aimed to provide the detailed design and operational investigations of synchronous reluctance motors (SynRM) that are commonly assembled by laminated electromagnetic steels. The magnetic flux paths in the SynRM rotors with various barrier and segment compositions will be analyzed, along with the generated motor torque and loss assessments. As the related mechanical cutting and/or punching processes on the rotor steels are required to achieve desired direct- and quadrature-axis reluctance ratios, their impacts to the flux paths due to saturations will also be thoroughly evaluated. Assisted by 3-D finite-element analyses, the results clearly indicated that the additional annealing process on the electromagnetic steel strips must be introduced for these SynRM designs with smaller sizes and higher efficiency requirements.
机译:本文旨在提供通常由叠片式电磁钢组装的同步磁阻电机(SynRM)的详细设计和操作研究。将分析具有各种势垒和分段组成的SynRM转子中的磁通路径,以及生成的电动机扭矩和损耗评估。由于需要在转子钢上进行相关的机械切割和/或冲压工艺,以实现所需的直轴和正交轴磁阻比,因此还将对由于饱和引起的磁通量对通量路径的影响进行全面评估。在3-D有限元分析的辅助下,结果清楚地表明,对于这些具有较小尺寸和更高效率要求的SynRM设计,必须在电磁钢带上引入额外的退火工艺。

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