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Simulation of Static Recrystallization After Cold Side-Pressing of Low Carbon Steels Using Cellular Automata

机译:基于元胞自动机的低碳钢冷侧压后静态再结晶模拟

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In this article, the finite element and cellular automata models are coupled to determine static recrystallization kinetics after cold deformation of low carbon steels. The deformation analysis is first performed to predict the strain, stress, and stored energy distributions within the deformed steel employing the finite element software, ABAQUS. Then, the kinetics of static recrystallization and distribution of recrystallized grain size are evaluated by means of a cellular automata model together with the stored energy calculated by the deformation analysis. To examine the predictions, the experimental results of recrystallized fractions and grain sizes after cold side-pressing of low carbon steel are compared with the predicted ones, and a reasonable agreement is achieved.
机译:在本文中,将有限元模型和元胞自动机模型耦合在一起,以确定低碳钢冷变形后的静态再结晶动力学。首先使用有限元软件ABAQUS进行变形分析,以预测变形钢内的应变,应力和存储的能量分布。然后,利用元胞自动机模型以及通过变形分析计算出的储能,评估静态再结晶动力学和再结晶晶粒尺寸分布。为了检验预测结果,将低碳钢冷侧压后的再结晶分数和晶粒尺寸的实验结果与预测结果进行了比较,并取得了合理的共识。

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