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Texture Development during Grain Growth in Nonoriented Electrical Steels

机译:无取向电工钢晶粒长大过程中的织构发展

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摘要

Nonoriented electrical steels should have both low core loss and high permeability. These magnetic properties are largely affected by grain size and texture. The research on grain size optimization during grain growth has been very extensive whereas little attention has been paid to texture transformation during grain growth. In the present study, based on obtained experimental results, a mechanism of texture development during grain growth in nonoriented electrical steels is proposed. In the 2% Si specimens, the major texture components, Goss and {111}<112> components, are weakened during grain growth. In the 1% Si specimens, the main texture components, {111}<112> and {111}<110>, are strengthened. It is proposed that for a texture component to be continuously strengthened during grain growth, the grains of the specific orientation should have not only a size advantage over those of other orientations, but also a higher frequency of high angle, high energy grain boundaries.
机译:无方向性电工钢应同时具有低铁损和高磁导率。这些磁性能在很大程度上受晶粒尺寸和织构的影响。晶粒生长过程中晶粒尺寸优化的研究非常广泛,而晶粒生长过程中的纹理转变却很少受到关注。在本研究中,基于获得的实验结果,提出了无取向电工钢晶粒生长过程中织构发展的机理。在2%的Si样品中,晶粒生长过程中主要的织构成分高斯和{111} <112>成分被削弱。在1%Si样品中,主要的织构成分{111} <112>和{111} <110>被增强。提出为了在晶粒生长期间连续地增强纹理成分,特定取向的晶粒不仅应具有优于其他取向的晶粒的尺寸优势,而且还应具有较高的高角度,高能晶界。

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