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Consideration of ferromagnetic anisotropy in electrical machines built of segmented silicon steel sheets

机译:对电机芯片制成的铁磁各向异性的考虑 - 分段硅钢板

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摘要

Electrical steel shows a distinct non-linear and anisotropic behaviour even for non-oriented steel. The flux guidance in electrical machines is realised by ferromagnetic steel sheets, and therefore it is necessary to consider the anisotropy in the simulation to have reliable and accurate results. Due to the fact that the reduction of silicon steel waste in the production process of electrical machines is crucial, and to enhance the material utilisation the segmentation is employed in the construction of electrical machines. The segmentation further allows to enhance the magnetic behaviour of the machine by considering the easy magnetisation axis in the design process. Nowadays, consideration of ferromagnetic anisotropy in the simulation of electrical machines is not accurate. To cope with these inaccuracies, in this contribution, a vectorial anisotropy model based on two-dimensional measurements is employed to the simulation of a segmented electrical machine, which is not state of the art in current machine computation. With the presented methodology, it is possible to simulate and design segmented electrical machines in an accurate fashion taking the ferromagnetic anisotropy into account.
机译:即使对于非成向钢,电钢也显示出明显的非线性和各向异性行为。电机的磁通引导由铁磁钢板实现,因此有必要考虑模拟中的各向异性,以具有可靠和准确的结果。由于电机生产过程中硅钢废物的减少至关重要,并且为了提高材料利用,该分割用于建造电机。该分割还允许通过考虑设计过程中的易磁化轴来提高机器的磁力行为。如今,考虑了铁磁各向异性在电机仿真中的考虑不准确。为了应对这些不准确性,在该贡献中,采用基于二维测量的横向各向异性模型用于模拟分段电机,该机器不是当前机器计算中的领域的状态。利用所提出的方法,可以以准确的方式模拟和设计分段电机,以考虑到铁磁各向异性。

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