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Evolution of magnetic properties and crystallographic texture in electrical steel with large plastic deformation

机译:大塑性变形中电钢磁性和晶体纹理的演变

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Deformation leads to a hardening of steel due to an increase in the density of dislocations and a reduction in their mobility, giving rise to a state of elevated residual stresses in the crystal lattice. In the microstructure, one observes an increase in the contribution of crystalline orientations which are unfavorable to the magnetization, as seen, for example, by a decrease in B_(50), the magnetic flux density at a field of 50 A/cm. The present study was carried out with longitudinal strips of fully processed non-oriented (NO) electrical steel, with deformations up to 70% resulting from cold rolling in the longitudinal direction. With increasing plastic deformation, the value of B_(50) gradually decreases until it reaches a minimum value, where it remains even for larger deformations. On the other hand, the coercive field H_c continually increases. Magnetometry results and electron backscatter diffraction results are compared and discussed.
机译:由于脱位密度的增加和流动性的降低,变形导致钢的硬化,从而产生晶格中的残余应力的状态。在微观结构中,一个人观察到晶体取向的贡献增加,这是不利于磁化的贡献,例如通过B_(50)的降低,磁通密度在50a / cm的场上所见。本研究采用完全加工的非定向(NO)电钢的纵向条带进行,变形高达70%,从纵向沿冷轧产生。随着塑性变形的增加,B_(50)的值逐渐降低,直到它达到最小值,即使较大变形仍然保持在那里。另一方面,矫顽场H_C不断增加。比较磁度测量结果和电子反向散射衍射结果,并讨论。

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