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Monte-Carlo Modeling of Recrystallization Kinetics of Cold-Rolled Titanium

机译:冷轧钛再结晶动力学的蒙特卡洛模拟

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The recrystallization behavior of cold-rolled, commercial-purity titanium was studied experimentally and with Monte-Carlo (MC) modeling. Utilization of EBSD-OIM as input for MC modeling resulted in realistic predictions of recrystallization kinetics, microstructure and texture, which were in good agreement with experimental results. MC modeling of recrystallization kinetics predicted that the non-uniform stored energy distribution, heterogeneous nucleation of recrystallization and recovery in combination leads to a negative deviation from linear JMAK kinetics. It was found that concurrent recovery that takes place during recrystallization is an important process that controls both the overall recrystallization kinetics and the deviation of linear JMAK kinetics. On the other hand, the non-uniformly distributed stored energy itself has little effect on the negative deviation from JMAK kinetics but intensifies the deviation when heterogeneous nucleation is combined. Modeling results also revealed that heterogeneous nucleation of recrystallized grains and their early impingement in local areas of high deformation are essential for producing a log-normal distribution of grain size and a typical recrystallization texture of rolled titanium.
机译:通过蒙特卡洛(MC)模型,对冷轧商业纯度钛的重结晶行为进行了实验研究。利用EBSD-OIM作为MC建模的输入,可以得出对重结晶动力学,微观结构和织构的真实预测,这与实验结果非常吻合。重结晶动力学的MC建模预测,不均匀的储能分布,重结晶的异质成核和恢复的组合会导致线性JMAK动力学的负偏差。已发现在重结晶过程中同时发生的恢复是一个重要的过程,该过程既控制总体重结晶动力学,又控制线性JMAK动力学的偏差。另一方面,非均匀分布的储能本身对与JMAK动力学的负偏差几乎没有影响,但在组合异相成核作用时会加剧偏差。建模结果还显示,再结晶晶粒的异质形核及其在高变形局部区域的早期冲击对于产生晶粒大小的对数正态分布和轧制钛的典型再结晶织构至关重要。

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