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Effect of hot band annealing on inclusions, texture, and magnetic properties 2.97%Si-0.59% Al non-oriented silicon steel

机译:热带退火对夹杂物,质地和磁性特性的影响2.97%Si-0.59%Al非导向硅钢

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Effects of hot band annealing on inclusions, texture and magnetic properties of the 2.97%Si-0.59%AI non-oriented silicon steel sheet with 0.3 mm in thickness were investigated by scanning electron microscope and Electron Backscattered Diffraction (EBSD). With the increase of hot band annealing temperature, the inclusions of 0.1-1 urn in hot band obviously reduced, the area fraction of {100}<110> texture prominently increased during recrystallization of hot band. However, the area fraction of {100}<110> dramatically dropped, and a-fibre texture, {111}<112> significantly developed during grain growth of hot band. The texture of the final sheets was dominated by α*-fibre texture, {001}<130> and γ-fibre texture. Furthermore, increasing of hot band annealing temperature increased the grain size, strengthen θ-fibre texture and weaken y-fibre texture of the final sheets, resulting in the improvement of the magnetic induction and iron loss.
机译:通过扫描电子显微镜和电子背散射衍射(EBSD)研究热带退火对厚度0.3mm的2.97%Si-0.59%AI非取向硅钢板的夹杂物,质地和磁性的影响。 随着热带退火温度的增加,热带中0.1-1 URN的夹杂物明显减少,在热带的重结晶期间{100} <110>纹理的面积分数突出增加。 然而,{100} <110>的面积分数显着掉落,{111} <112>在热带的晶粒生长期间显着发展的{111} <112>。 最终纸张的纹理由α* -Fibre纹理,{001} <130>和γ-纤维纹理主导。 此外,增加热带退火温度的粒度提高了晶粒尺寸,强化θ-纤维质地和弱的最终薄片的Y-纤维质地,导致磁感应和铁损的改善。

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