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Magnetic anisotropy under arbitrary excitation in finite element models

机译:有限元模型中任意激励下的磁各向异性

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Magnetic properties of silicon iron electrical steel are determined by using standardized measurement setups and distinct excitation parameters. Characteristic values for magnetic loss and magnetization are used to select the most appropriate material for its application. This approach is not sufficient, because of the complex material behavior inside electrical machines, which can result in possible discrepancies between estimated and actual machine behavior. The materials’ anisotropy can be one of the problems why simulation and measurement are not in good accordance.With the help of a rotational single sheet tester, the magnetic material can be tested under application relevant field distribution. Thereby, additional effects of hysteresis and anisotropy can be characterized for detailed modelling and simulation.
机译:通过使用标准化测量设置和不同的激励参数来确定硅铁电钢的磁性。 磁损耗和磁化的特征值用于选择最合适的材料以其应用。 由于电机内部的复杂材料行为,这种方法是不够的,这可能导致估计和实际机器行为之间可能的差异。 材料的各向异性可以是仿真和测量的问题之一,因为旋转单板测试仪的帮助,磁性材料可以在应用相关的现场分布下进行测试。 因此,可以表征滞后和各向异性的额外效果以进行详细的建模和模拟。

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