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Rotational Magnetization in Transformer Cores—A Review

机译:变压器磁芯中的旋转磁化—综述

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Usually, rotational magnetization (RM) is associated with rotating machine cores. However, in more restricted ways, it also arises in three-phase transformer cores. Modern designs of T-joint yield detours of flux, as a source of RM in the T-joint, the middle limb ends, as well as in the yokes. Simulation of RM is possible by means of so-called rotational single sheet testers which should consider the large grains of highly grain oriented materials. Their high effective anisotropy yields induction patterns of rhombic or lancet-like type with maximum values of axis ratio a up to 0.5, and very high angular velocity round the materials hard directions. Compared to elliptic RM—as arising in non-oriented materials—the corresponding losses are lower due to restricted induction in the hard direction. But they show strong increase with (i) rising a and (ii) rising angular velocity of the induction vector. The magnetostrictive strain shows a pronounced (negative) maximum in the rolling direction with values up to 10 ppm, the transverse direction and normal direction exhibiting positive maxima of lower extent. With respect to industrial relevance, significant RM effects are restricted to the vicinities of T-joints. They represent the location of maximum core loss and also of maximum magnetostrictive strain as a source of audible core noise.
机译:通常,旋转磁化(RM)与旋转的机器核心相关。但是,它以更受限的方式出现在三相变压器铁芯中。 T形接头的现代设计会产生磁通量的弯路,因为T形接头,中肢末端以及叉架中是RM的来源。借助所谓的旋转单张测试仪可以对RM进行模拟,该测试仪应考虑高晶粒取向材料的大晶粒。它们的高有效各向异性产生菱形或刺血针型感应图案,其轴比a的最大值最高为0.5,并且在材料的硬方向上具有很高的角速度。与椭圆RM相比(在非定向材料中产生)​​,由于在硬方向上的感应受限,相应的损耗较低。但是它们显示出随着(i)上升a和(ii)感应矢量的角速度上升而显着增加。磁致伸缩应变在轧制方向上显示出明显的(负)最大值,其值高达10 ppm,横向和法向显示出较小程度的正最大值。就工业相关性而言,显着的RM效应仅限于T形接头附近。它们代表最大的铁芯损耗和最大的磁致伸缩应变的位置,作为可听到的铁芯噪声的来源。

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