FEM Modeling of Shear Cutting of Electrical Steel Sheets under Various Technological Conditions

J. Slota, Ľ. Kaščák, S. Kut
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引用次数: 2

Abstract

Almost all electrical machine consists of the stator and rotor cores, which are made of stacked non-oriented electric steel sheets. Punching and blanking are the two commonly used shear cutting technologies. The efficiency and performance of an electrical machine depend on the magnetic properties of its magnetic core. The shear cutting process causes the formation of residual stresses in cut segments next to the cutting line from the non-oriented electrical sheet metal, resulting in increased iron losses. The extent of deterioration in the magnetic material properties depends on the amount of induced stresses, which is affected by the used process parameters during shear cutting and the mechanical properties of the electrical steel sheets. This paper focuses on the residual stresses induced by punching with different shear cutting conditions using finite element analysis. Influence of cutting clearance of the shear cutting tool on were observed.
不同工艺条件下电工钢板剪切的有限元模拟
几乎所有的电机都由定子和转子铁芯组成,它们是由堆叠的无取向电钢板制成的。冲孔和下料是两种常用的剪切切割技术。电机的效率和性能取决于其磁芯的磁性。剪切切割过程导致无取向电板料在切割线附近的切割段形成残余应力,导致铁损失增加。磁性材料性能的恶化程度取决于感应应力的大小,而感应应力的大小又受剪切过程中使用的工艺参数和电钢板的机械性能的影响。本文采用有限元方法对不同剪切切削条件下的冲压残余应力进行了分析。观察了剪切刀具切削间隙对剪切性能的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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