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首页> 外文期刊>AIP Advances >Comparison between measured and computed magnetic flux density distribution of simulated transformer core joints assembled from grain-oriented and non-oriented electrical steel
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Comparison between measured and computed magnetic flux density distribution of simulated transformer core joints assembled from grain-oriented and non-oriented electrical steel

机译:取向和非取向电工钢组装的模拟变压器铁心接头的实测和计算磁通密度分布比较

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The flux distribution in an overlapped linear joint constructed in the central region of an Epstein Square was studied experimentally and results compared with those obtained using a computational magnetic field solver. High permeability grain-oriented (GO) and low permeability non-oriented (NO) electrical steels were compared at a nominal core flux density of 1.60 T at 50 Hz. It was found that the experimental results only agreed well at flux densities at which the reluctance of different paths of the flux are similar. Also it was revealed that the flux becomes more uniform when the working point of the electrical steel is close to the knee point of the B-H curve of the steel.
机译:实验研究了在爱泼斯坦广场中心区域构造的重叠线性接头中的通量分布,并将其结果与使用计算磁场求解器获得的结果进行了比较。在50 Hz的标称磁芯磁通密度为1.60 T的情况下,对高磁导率取向(GO)和低磁导率非取向(NO)电工钢进行了比较。结果发现,实验结果仅在通量密度一致,通量密度不同时,通量的不同路径的磁阻相似。还揭示出,当电工钢的工作点接近钢的B-H曲线的拐点时,通量变得更均匀。

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