Experimental characterization of magnetic materials for electrical machine applications

A. Krings, J. Soulard
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引用次数: 16

Abstract

Most of the volume in classical electrical machines is occupied by magnetic materials for creating an as good as possible magnetic path. In machines with planar flux paths (2D geometries) the material is laminated to reduce eddy current losses in the core. Manufacturers typically supply reference values from Epstein frame measurements as a material performance specification and an easy way for comparison. However, the magnetic flux path in electrical machines is more complex due to rotating magnetic fields passing through the stator (with or without teeth), the rotor, and the airgap. Therefore, other material characterization methods, such as ring core measurements, are more suitable to characterize the magnetic materials for electrical machines. This paper gives a short introduction on different methods to characterize magnetic materials and a detailed description of building up a measurement system for characterizing ring core samples or electrical machine stator cores. The system is developed with regard to the IEC standard for measurements on magnetic ring core samples and can easily be build up in any lab with a power amplifier and a standard industrial control system equipped with analog input/output interfaces. Finally, reference measurements demonstrate the performance of the system.
电机用磁性材料的实验表征
经典电机的大部分体积都被磁性材料占据,以创造尽可能好的磁路。在具有平面磁通路径(二维几何形状)的机器中,材料被层压以减少芯中的涡流损耗。制造商通常提供来自爱泼斯坦框架测量的参考值,作为材料性能规格和比较的简便方法。然而,由于旋转磁场通过定子(有或没有齿)、转子和气隙,电机中的磁通路径更为复杂。因此,其他材料表征方法,如环铁芯测量,更适合表征电机用磁性材料。本文简要介绍了磁性材料的各种表征方法,并详细介绍了环形铁芯样品或电机定子铁芯表征测量系统的建立。该系统是根据IEC标准开发的,用于磁环芯样品的测量,可以很容易地在任何带有功率放大器和配备模拟输入/输出接口的标准工业控制系统的实验室中建立。最后,参考测量验证了系统的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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