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Evolution of Goss Orientation during Rapid Heating for Primary Recrystallization in Grain-oriented Electrical Steel

机译:取向电工钢快速加热初次再结晶过程中戈斯取向的演变

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To obtain ideal Goss-oriented Fe-3.1%Si electrical steel, we studied the Goss orientation and microstructure during the various processes from hot-band annealing to the primary recrystallization. In particular, we examined the effect of the heating rate (20°C/s and 150°C/s) on the primary recrystallization behavior. In the annealed hot-band, the surface and middle layers have different textures. In the surface layer, a weak Goss texture developed, while in the inner layer, very strong α-fiber and weak γ-fiber texture were formed. The cold-rolled sheet had a relatively strong α-fiber and weak γ-fiber texture. In the cold-rolled sheet, the Goss oriented grains with an average size of 0.15 μm were more in the surface layer than in the middle layer. One part of the Goss-oriented grains originated from the annealed hot-band, while the other was formed during the cold rolling. During recrystallization, the size of the Goss-oriented grains was not influenced by the heating rate. However, the fraction and distribution of the grains depended on the heating rate. For high heating rates, the fraction of Goss grains is larger, and these grains had similar distributions in both the surface and middle layers.
机译:为了获得理想的戈斯取向的Fe-3.1%Si电工钢,我们研究了从热轧带退火到初次再结晶的各种过程中的戈斯取向和显微组织。特别是,我们研究了加热速率(20°C / s和150°C / s)对一次重结晶行为的影响。在退火的热带中,表面层和中间层具有不同的纹理。在表面层中,形成了弱的戈斯织构,而在内层中,形成了非常强的α-纤维和弱的γ-纤维织构。冷轧板具有相对强的α纤维和弱的γ纤维织构。在冷轧薄板中,表面层的平均尺寸为0.15μm的高斯取向晶粒比中间层的高。高斯取向晶粒的一部分起源于退火的热带,而另一部分则是在冷轧过程中形成的。在重结晶过程中,高斯取向晶粒的尺寸不受加热速率的影响。然而,晶粒的分数和分布取决于加热速率。对于高加热速率,高斯晶粒的分数更大,并且这些晶粒在表面层和中间层中具有相似的分布。

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