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Influence of Punching and Tool Wear on the Magnetic Properties of Nonoriented Electrical Steel

机译:冲孔和工具磨损对无取向电工钢磁性能的影响

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摘要

Because electric cars are manufactured in high quantities, the influence of punching of nonoriented electrical steel with respect to tool wear becomes an important topic for the automotive industry. With regard to quality assurance, it is necessary to investigate the local degradation of the magnetic properties due to the plastic deformation caused by the cutting process. In this contribution, both the local changes of the microstructure of the material and the magnetic properties will be considered. Different methods for analyzing the manufactured electrical steel laminations were applied. Cutting edges generated under different states of tool wear were examined by means of optical microscopy and electron backscatter diffraction to visualize the influence of plastic deformations. The magnetic properties of punched electrical steel laminations as a function of increasing tool wear have been determined by hysteresis measurements of stacked ring cores. With respect to quality assurance purposes spatially resolved measurements have been carried out to determine local magnetic properties and find a suitable correlation to application-relevant quantities.
机译:由于电动汽车的制造量很大,无定向电工钢的冲孔对工具磨损的影响就成为汽车工业的重要课题。关于质量保证,有必要研究由于切削过程引起的塑性变形而引起的磁性能的局部退化。在此贡献中,将同时考虑材料的微观结构的局部变化和磁性。应用了不同的方法来分析制成的电工钢叠片。通过光学显微镜和电子反向散射衍射检查在不同工具磨损状态下产生的切削刃,以观察塑性变形的影响。冲压电工钢叠片的磁性能随工具磨损的增加而变化,已通过叠环铁心的磁滞测量确定。关于质量保证目的,已经进行了空间分辨的测量以确定局部磁性能并找到与应用相关量的合适的相关性。

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