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首页> 外文期刊>Steel Research International >Analysis of {100} Texture Formation in Vacuum Annealed Electrical Steel Based on Elastic Anisotropy and Surface Energy Anisotropy
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Analysis of {100} Texture Formation in Vacuum Annealed Electrical Steel Based on Elastic Anisotropy and Surface Energy Anisotropy

机译:基于弹性各向异性和表面能量各向异性的真空退火电钢中{100}纹理形成分析

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In the present work, columnar grains with strong {100} texture in the surface layer are obtained by controlling cold rolling reduction and vacuum annealing with alpha - gamma - alpha transformation in a Fe-3%Si steel sheet containing Mn and C. The formation of the {100} texture during vacuum annealing is related to cold rolling reduction. The {100} seeds are retained during a low cold rolling reduction and recrystallization process. The annealed {100} and {100} originate mainly from the nucleation of recrystallization in deformed microstructures. The {100} texture, that is, formed during vacuum annealing originates from the deformed {100}. The development of sharp {100} texture is caused by alpha - gamma - alpha transformation during vacuum annealing. In the process of gamma to alpha transformation, the values of elastic strain energy for alpha grains with different orientations on the surface are estimated. By combining the surface energies of various crystallographic planes, it is reasonable to conclude that the elastic strain energy anisotropy plays a significant role in the formation of a sharp {100} texture during gamma - alpha transformation. The {100} grains prefer to grow in the surface layer columnar grains by minimizing elastic strain energy during gamma - alpha transformation.
机译:在本作本作中,通过控制冷轧和用α-&gt真空退火来获得表面层中具有强的{100}纹理的柱状晶粒。伽玛 - &含有Mn和C的Fe-3%Si钢板中的α变换。在真空退火过程中形成{100}纹理与冷轧减少有关。在低冷轧缩短和再结晶过程中保留{100}种子。退火的{100}和{100}主要来自变形微观结构中的重结晶成核。在真空退火期间形成的{100}纹理起源于变形{100}。夏普{100}纹理的发展是由alpha - &gt引起的;伽玛 - &在真空退火过程中的α变换。在γ对α变换的过程中,估计表面上具有不同取向的α颗粒的弹性应变能值。通过组合各种晶体平面的表面能,得出结论是合理的,因为在γ - &gt期间,弹性应变能源各向异性在形成夏普{100}纹理的形成中起着重要作用; alpha转换。 {100}晶粒更倾向于通过最小化γ - &gt期间的弹性应变能量在表面层柱状晶粒中生长。 alpha转换。

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