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On the Origin of γ -Fiber Recrystallization Textures in Deep Drawing Quality Steels

机译:关于γ-纤维重结晶纹理的起源在深度绘制质量钢中

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The γ fiber (ND//<111>) recrystallization texture evolves (at least on a meso-scale) by the preferred nucleation of γ oriented recrystallized grains from deformed grains/bands of similar orientations. Two physical factors determine the relative amount of the final γ texture: the relative proximity of deformed γ grains or bands and the ability of such deformed γ to form recrystallized grains. The first factor is basically determined by the deformation texture and may also be affected by the evolution of new high angle grain boundaries during the deformation process itself. The second factor may, on the other hand, involve the classical nucleation and/or limited/selective growth. Experimental evidences strongly suggest that the origin of the preferred γ nucleation exists in the framework of higher stored energy of γ oriented deformed grains - an event caused by the somewhat preferred formation of grain interior strain localizations in deformed γ.
机译:γ纤维(Nd // <111>)重结晶纹理通过优选的γ取向的再结晶颗粒来自来自类似取向的变形的晶粒/条带的优选成核来演化(至少在中间级)。两个物理因素决定了最终γ纹理的相对量:变形γ颗粒或带的相对接近和这种变形γ形成再结晶颗粒的能力。第一因子基本上由变形纹理决定,并且也可能受到变形过程本身期间新的高角度晶界的演变的影响。另一方面,第二因素可以涉及经典成核和/或有限/选择性生长。实验证据强烈表明,优选γ成核的起源存在于γ取向变形晶粒的较高储存能量的框架中 - 由晶粒内部应变型在变形γ中的颗粒内部应变局部引起的事件。

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