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首页> 外文期刊>Electric Power Applications, IET >Magnetostriction in grain-oriented electrical steels under AC magnetisation at angles to the rolling direction
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Magnetostriction in grain-oriented electrical steels under AC magnetisation at angles to the rolling direction

机译:与轧制方向成角度的交流磁化作用下晶粒取向电工钢的磁致伸缩

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摘要

Magnetostriction is an important source of vibration and acoustic noise in electromagnetic cores. This study reports magnetostriction components along the rolling, transverse and magnetisation directions (MDs) of grain-oriented (GO) electrical steels, used for transformer and large rotating machine cores, under magnetisation at angles to the rolling direction (RD). Magnetostriction components in the sheet plane were simultaneously measured using a two-dimensional magnetisation system. Results from the measurements agreed with the magnetostriction calculated from a simplified model of magnetic domain patterns in a 3% SiFe single crystal. It is shown that the magnetostrictive strain along the RD is always the highest component in the sheet plane irrespective of MD. This is expected to cause both additional vibration at the corners of transformer cores where flux deviates from the RD and high radial vibration in the back-iron regions of rotating machine stator cores assembled from segmented GO steel laminations.
机译:磁致伸缩是电磁芯中振动和声噪声的重要来源。这项研究报告了用于变压器和大型旋转机器芯的晶粒取向(GO)电工钢在轧制,横向和磁化方向(MDs)上的磁致伸缩分量,这些磁化强度与轧制方向(RD)成一定角度。使用二维磁化系统同时测量板平面中的磁致伸缩分量。测量结果与3%SiFe单晶中磁畴图形简化模型计算出的磁致伸缩一致。结果表明,与MD无关,沿RD的磁致伸缩应变始终是薄板平面中的最高分量。预计这将导致在磁通量偏离RD的变压器铁心拐角处产生额外的振动,并在由分段GO钢叠片组装而成的旋转电机定子铁心的后铁区域中引起高径向振动。

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