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Iron Loss Deterioration by Shearing Process in Non-Oriented Electrical Steel with Different Thicknesses and Its Influence on Estimation of Motor Iron Loss

机译:不同厚度无方向电工钢的剪切过程铁损恶化及其对电机铁损估算的影响

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The influence of the shearing process on the iron loss of non-oriented electrical steels with thicknesses of 0.20-0.50mm was investigated. The deterioration of material iron loss was lesser in thinner steel sheets. The distribution of the increase in hardness near the sheared edge was almost half of the sheet thickness for all tested steels. Therefore, applying thinner steel sheets for the motor core may decrease the iron loss deterioration from the punching process. This argument was supported by measuring the iron loss of a model IPMSM using steels with different thicknesses and calculating the motor iron loss through FE analysis. The magnetic properties of narrow pieces corresponding to the width of the motor's teeth and yoke were shown to be important and useful to estimating the motor iron loss more accurately.
机译:研究了剪切工艺对厚度为0.20-0.50mm的无取向电工钢的铁损的影响。在较薄的钢板中,材料铁损的恶化较小。对于所有测试的钢,在剪切边缘附近硬度增加的分布几乎是板厚度的一半。因此,在电机铁芯上使用较薄的钢板可以减少冲压过程中铁损的恶化。通过使用不同厚度的钢测量IPMSM模型的铁损并通过有限元分析计算电动机的铁损,可以证明这一观点。已显示出与电动机的齿和轭的宽度相对应的窄片的磁性,对于更准确地估计电动机的铁损非常重要和有用。

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