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Modeling of Losses Due to Inter-Laminar Short-Circuit Currents in Lamination Stacks

机译:叠层中层间短路电流引起的损耗建模

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The cores of electrical machines are generally punched and laminated to reduce the eddy current losses. These manufacturing processes such as punching and cutting deform the electrical sheets and deteriorate its magnetic properties. Burrs are formed due to plastic deformation of electrical sheets. Burr formed due to punching on the edges of laminated sheets impairs the insulation of adjacent sheet and make random galvanic contacts during the pressing of stacked sheets. The effect of circulating current occurs if the burrs occur on the opposite edges of the stacks of laminated sheets and incase of bolted or wielded sheets, induced current return through it. This induced current causes the additional losses in electrical machine. The existence of surface current on the boundary between two insulated regions causes discontinuity of tangential component of magnetic field. Hence, based on this principle, the boundary layer model was developed to study the additional losses due to galvanic contacts formed by burred edges. The boundary layer model was then coupled with 2-D finite element vector potential formulation and compared with fine mesh layer model. Fine mesh layer model consists of finely space discretized 950028 second order triangular elements. The losses were computed from two models and were obtained similar at 50 Hz. The developed boundary layer model can be further used in electrical machines to study additional losses due to galvanic contacts at the edges of stator cores.
机译:电机的芯通常被冲孔和层压以减少涡流损耗。这些诸如冲孔和切割的制造过程使电气片变形并使其磁性能劣化。由于电气板的塑性变形而形成毛刺。由于在层压板的边缘上冲孔而形成的毛刺会损害相邻板的绝缘性,并在压制堆叠板期间产生随机的电接触。如果毛刺出现在叠层板叠的相对边缘上,并且发生螺栓连接或铆接的情况,则感应电流将通过该回路返回,从而产生循环电流。该感应电流导致电机的额外损耗。在两个绝缘区域之间的边界上存在表面电流会导致磁场的切向分量不连续。因此,基于此原理,开发了边界层模型来研究由于毛刺边缘形成的电接触而造成的额外损失。然后将边界层模型与二维有限元矢量电势公式耦合,并与细网格层模型进行比较。精细网格层模型由精细空间离散的950028二阶三角形元素组成。损耗是根据两个模型计算得出的,并且在50 Hz时获得了相似的损耗。所开发的边界层模型可以进一步用于电机中,以研究由于定子铁芯边缘的电接触而造成的额外损耗。

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