考虑到在分段电枢轴向磁通永磁机中使用薄层钢板的性能和实施问题

P. Sergeant, H. Vansompel, L. Dupré
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引用次数: 6

摘要

对于无轭和分段电枢(YASA)轴向磁通永磁体,讨论了几种层压叠加方法。对于相同的全局机器几何形状,表明一些更容易和更便宜的生产,而另一些具有更高的输出扭矩,更低的齿槽扭矩,更好的效率或更高的功率密度。除了研究不同的叠层几何形状外,还研究了不同的磁体几何形状。通过对不同层叠方式和磁体形状的组合进行评价,表明某些组合存在局部饱和、低输出转矩和高损耗的问题。采用多层二维有限元模型和简化三维有限元模型进行了仿真。为了证明所提模型的有效性,仿真结果与样机上的测量结果进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance and implementation issues considering the use of thin laminated steel sheets in segmented armature axial-flux PM machines
For yokeless and segmented armature (YASA) axial flux permanent-magnet machines, several lamination stacking methods are discussed. For the same global machine geometry, it is shown that some are easier and cheaper to produce, while others have a higher output torque, lower cogging torque, better efficiency or higher power density. Apart from the different lamination stack geometries, also different magnet geometries are studied. By evaluating the different combinations of lamination stacking methods and magnet shapes, it is shown that some combinations suffer from local saturation, lower output torque and higher losses. The simulations are performed by a multilayer 2D and a simplified 3D finite element model. To prove the validity of the proposed model, simulated results are verified with measurements on a prototype machine.
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