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Comparison of flux distribution in three-phase transformer cores assembled from amorphous material and grain oriented silicon iron

机译:由非晶态材料和取向硅铁组装而成的三相变压器铁芯的磁通分布比较

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Model stacked three-phase transformer cores were assembled from amorphous material and from grain-oriented silicon iron, and both types were magnetized under sinusoidal flux density conditions. Small search coils were located at selected points on individual strips of material in both cores in order to monitor the localized flux density distribution from analysis of the voltages induced in the coils. The distribution of the fundamental and third- and fifth-harmonic flux density in the plane of the core was recorded at chosen instants in time, and the locus of the flux density at each measuring point was plotted. Three important differences were observed. First, the flux in the amorphous core tended to vary in direction as it proceeded around corners, whereas in the other core the flux density was directed along the rolling directions of the laminations almost everywhere. Second, there was a high degree of rotational flux in the T-joint of the amorphous core that did not occur in the core assembled from silicon iron. Third, the flux was more uniform in the amorphous core. On the basis of these results, the building factor of the amorphous core should be far less than that of the silicon iron core of the same geometry.
机译:模型堆叠的三相变压器铁心由非晶材料和取向硅铁组装而成,两种类型的铁心都在正弦磁通密度条件下磁化。小型搜索线圈位于两个磁芯中各个材料条上的选定点上,以便通过分析线圈中感应的电压来监控局部磁通密度分布。在选定的时间点记录磁芯平面中的基本谐波和三次谐波和第五谐波通量密度的分布,并绘制每个测量点的通量密度轨迹。观察到三个重要差异。首先,无定形磁芯中的磁通量随着其绕拐角的方向而趋于变化,而在另一个磁芯中,磁通密度几乎沿着各处的叠片的滚动方向定向。其次,在非晶铁芯的T形接头中有很高的旋转通量,而在由硅铁组装而成的铁芯中却没有。第三,在非晶核中的通量更均匀。根据这些结果,非晶核的构造系数应远小于相同几何形状的硅铁核的构造系数。

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