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Numerical simulation of shrink-fit motor using gradient Si steel

机译:梯度硅钢热缩电动机的数值模拟

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A gradient Si steel sheet shows low iron loss in the high-frequency range and lower iron loss deterioration under compressive stresses, therefore, it is suitable for use as the core material of high-speed motors, which have seen considerable downsizing in recent years. By performing shearing and shrink-fitting, the advantages of gradient Si steel as a motor material are investigated in this study. In both shearing and compressive stress experiments, gradient Si steel showed lower iron loss compared to conventional nonoriented electrical steel (0.2 mm thick). By numerical simulation, the efficiencies of the shrink-fitted motors using gradient Si steel and 3% Si steel were calculated. The motor using the gradient Si steel showed significantly higher efficiency than that using the 3% Si steel. Moreover, even under city driving conditions, gradient Si steel showed good efficiency, because of lower iron loss deterioration. Therefore, gradient Si steel can be used for a wide variety of motors in addition to high-frequency devices.
机译:梯度Si钢板在高频范围内铁损低,在压缩应力下铁损变小,因此适合用作近年来已大幅缩小尺寸的高速电动机的芯材。通过进行剪切和收缩拟合,研究了梯度硅钢作为电机材料的优势。在剪切和压缩应力实验中,与常规的非定向电工钢(0.2毫米厚)相比,梯度硅钢显示出更低的铁损。通过数值模拟,计算了使用梯度硅钢和3%硅钢的热装电动机的效率。使用梯度硅钢的电动机的效率明显高于使用3%硅钢的电动机。此外,即使在城市行驶条件下,由于铁损降低较小,梯度硅钢仍显示出良好的效率。因此,除了高频设备外,梯度硅钢还可以用于多种电动机。

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