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Origin of the Recrystallization Texture Formation in an Interstitial Free Steel

机译:间隙钢中再结晶织构形成的起源

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A laboratory investigation has been carried out to reveal the mechanism of recrystallization texture formation in an interstitial free (IF) steel, based on the assumption that the reduced grain boundary constraint for a grain rotation during cold-rolling plays an important role on the mechanism. As a parameter of grain boundary constraint, the ratio of deformation strengths of grain boundary area and grain matrix were varied by changing the cold-rolling temperature (-100-200℃) and microalloying of boron into IF steel. The paper revealed that the reduced grain boundary constraint by scavenging the interstitial elements from grain boundaries not only enhanced a development of γ-fiber texture but also suppressed a formation of deformation bands inside the γ-fiber matrix during cold-rolling in IF-steel. In-situ like recrystallization from the strong {111} < 112 > γ-fiber texture, which is caused by a reduction of nucleation frequency of < 110 > //ND grains from deformation bands, is the origin of the the strong {111} < 112 > γ-fiber recrystallization texture formation in IF steel.
机译:已经进行了一项实验室研究,以揭示无间隙(IF)钢中再结晶织构的形成机理,该假设基于以下假设:在冷轧过程中,减小的晶界约束对晶粒旋转起着重要的作用。作为晶界约束的一个参数,通过改变冷轧温度(-100-200℃)和硼在IF钢中的微合金化,改变了晶界面积与基体变形强度的比值。该论文揭示了通过从晶界清除间隙元素而减少的晶界约束,不仅增强了γ纤维组织的发展,而且抑制了IF钢冷轧过程中γ纤维基体内的变形带的形成。强{111} <112>γ纤维织构的原位重结晶是强{111}的起源,这是由于<110> // ND晶粒从形变带的成核频率降低而引起的。 <112> IF钢中的γ纤维再结晶织构。

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