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Formation of The {111}<112> and {111}<110> Recrystallization Texture in Deep Drawing Low Carbon Steel

机译:在深拉碳钢中形成{111} <112>和{111} <110>重结晶纹理

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The formation of {111}<112> and {111}<110> recrystallization textures during annealing of cold rolled low carbon steels at low heating rate was investigated by electron backscatter diffraction (EBSD) and X-ray diffraction techniques. The orientation characteristics during recrystallization of this steel were determined, results show that there is a strong competition between the {111}<112> component and the {111}<110> component along the γ-fiber. The former was developed from the deformed matrix with the same orientation by means of subgrain coalescence at early stage of recrystallization, while the latter nucleated at the grain boundary areas of deformed grains with {111}<112> or {112}<110> orientations by means of preferred nucleation and evolved into stable recrystallization texture at later stage of recrystallization.
机译:通过电子反向散射衍射(EBSD)和X射线衍射技术研究了在低加热速率下冷轧低碳钢退火期间的{111} <112>和{111} <110>再结晶纹理的形成。确定了该钢重结晶期间的取向特性,结果表明沿γ-纤维的{111} <112组分和{111} <110>组分之间存在强烈的竞争。前者是从变形的基质和再结晶早期阶段的粒子聚结具有相同的取向,而后者在具有{111} <112> <110} {112} <110>取向的变形晶粒的晶界区域处通过优选的成核,并在再结晶后阶段进化成稳定的再结晶纹理。

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