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Application of High-Strength Nonoriented Electrical Steel to Interior Permanent Magnet Synchronous Motor

机译:高强度无方向电工钢在室内永磁同步电动机中的应用

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摘要

We investigated the torque characteristics and the motor efficiency of interior permanent magnet synchronous motors (IPMSM), in which a rotor core consists of high-strength nonoriented electrical steel, as-cold-rolled nonoriented electrical steel, and conventional nonoriented electrical steel with various bridge widths. Furthermore, we analyzed deformation behavior of the rotor core during operation by finite element method. The motor of the high-strength nonoriented electrical steel generated greater magnet torque than that of the conventional nonoriented electrical steel. Although the high-strength nonoriented electrical steel had much higher iron loss than the conventional nonoriented electrical steel, the motor efficiency decreased only slightly. A reduction in the bridge width of the rotor core significantly enhanced the torque characteristics and the motor efficiency of IPMSM. The high-strength nonoriented electrical steel effectively suppressed the deformation of the rotor core with its excellent mechanical properties, and the suppression enabled us to reduce the bridge width sufficiently. Accordingly, a magnetically optimum rotor core design will be realized with the high-strength nonoriented electrical steel, and the performance of IPMSM will be significantly enhanced, particularly in traction motors for electric vehicles and hybrid electric vehicles and compressor motors for energy-efficient air conditioners.
机译:我们研究了内部永磁同步电动机(IPMSM)的转矩特性和电动机效率,该电动机的转子芯由高强度无取向电工钢,冷轧无取向电工钢和具有各种桥的常规无取向电工钢组成宽度。此外,我们通过有限元方法分析了转子铁心在运行过程中的变形行为。与传统的无方向性电工钢相比,高强度无方向性电工钢的电动机产生更大的磁矩。尽管高强度无取向电工钢的铁损比常规无取向电工钢高得多,但电动机效率仅略有下降。转子铁芯桥宽度的减小大大提高了IPMSM的扭矩特性和电机效率。高强度无方向性电工钢以其优异的机械性能有效地抑制了转子铁芯的变形,并且这种抑制使我们能够充分减小电桥宽度。因此,将使用高强度无取向电工钢实现磁优化的转子铁芯设计,并且IPMSM的性能将得到显着提高,尤其是在电动汽车和混合动力汽车的牵引电动机以及节能空调的压缩机电动机中。

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