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Comparison of Nonoriented and Grain-Oriented Material in an Axial Flux Permanent-Magnet Machine

机译:轴向磁通永磁机中无取向和晶粒取向材料的比较

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摘要

The performance and iron losses of an axial flux permanent-magnet synchronous machine (AFPMSM) using nonoriented (NO) steel are compared with the performance and iron losses of an AFPMSM using grain-oriented (GO) material. The machine is modeled by several 2-D finite element models in circumferential direction, at different radii. The material model for the GO material is an anhysteretic anisotropic model based on the magnetic energy. The magnetic energy is computed by using several measured quasi-static $BH$-loops on an Epstein frame in seven directions starting from the rolling direction to the transverse direction. The losses are calculated a posteriori, based on the principles of loss separation and dynamic loop measurements. A loss model was made for each of the seven directions, assuming unidirectional fields. In comparison with the more usual NO material, both the saturation induction and the torque are higher with GO material. The magnetic field in the GO material is lower than for NO material in the major part of the iron, but higher in the tooth tips where the field is not in the rolling direction. The stator iron losses are about 7 times lower for the considered GO compared to the NO material.
机译:将使用无取向(NO)钢的轴向磁通永磁同步电机(AFPMSM)的性能和铁损与使用取向(GO)材料的AFPMSM的性能和铁损进行比较。该机器由多个二维有限元模型在圆周方向上以不同半径建模。 GO材料的材料模型是基于磁能的磁滞各向异性模型。通过在爱普斯坦框架上使用从滚动方向到横向开始的七个方向上的多个测得的准静态$ BH $回路来计算磁能。损耗是基于损耗分离和动态环路测量的原理后验计算的。假设单向场,则针对七个方向的每个方向建立损耗模型。与更常用的NO材料相比,GO材料的饱和感应和扭矩都更高。在铁的主要部分中,GO材料中的磁场低于NO材料中的磁场,但在齿尖中的磁场较高,而磁场不在轧制方向。相对于NO材料,考虑的GO定子铁损约低7倍。

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