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首页> 外文期刊>Metallography, Microstructure, and Analysis >Microstructural Changes During Static Recrystallization of Austenitic Stainless Steel 304L: Cellular Automata Simulation
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Microstructural Changes During Static Recrystallization of Austenitic Stainless Steel 304L: Cellular Automata Simulation

机译:奥氏体不锈钢304L:蜂窝自动机模拟静态再结晶过程中的微观结构变化

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Static recrystallization and microstructural changes in austenitic stainless steel 304L were studied. The rolling experiments at 200 degrees C were carried out, and then, annealing treatment was made at temperatures ranging between 500 and 830 degrees C. A model was also developed to simulate the kinetics of non-isothermal recrystallization within the rolled steel. The distribution of plastic strains during rolling was predicted utilizing an elastic-plastic finite element formulation performed in ABAQUS/Explicit, while the predicted results were used to generate the as-rolled microstructure and to estimate the stored energy. Finally, microstructural-thermal model based on cellular automata was developed to evaluate the rate of static recrystallization within the rolled steel. The comparison between experimental and simulations showed a good consistency. The predictions illustrated that inhomogeneous distribution of plastic strain was produced during multi-pass rolling leading to different rates of recrystallization in the center and the surface regions of the rolled plate. The onset temperature of recrystallization was found about 700 degrees C, and the activation energies for nucleation and growth for recrystallization were determined as 180 kJ/mol and 240 kJ/mol, respectively. It was found that homogenous nucleation mechanism can be operative in recrystallization of multi-pass rolled steel, i.e., for reduction of 40% or higher.
机译:研究了奥氏体不锈钢304L的静态重结晶和微观结构变化。进行200摄氏度的轧制实验,然后在500至830℃的温度下进行退火处理。还开发了一种模型以模拟轧制钢内非等温再结晶的动力学。利用在ABAQUS /明确中进行的弹性塑料有限元制剂预测轧制期间的塑料菌株的分布,而预测结果用于产生轧制的微观结构并估计存储的能量。最后,开发了基于蜂窝自动机的微观结构 - 热模型来评估轧制钢中的静电重结晶速率。实验和模拟之间的比较显示出良好的一致性。所示的预测,在多遍轧制期间产生了塑性菌株的不均匀分布,导致中心和轧制板的表面区域中的重结晶速率的不同速率。重结晶的开始温度约为700℃,分别测定用于再结晶的核切种和生长的活化能量分别为180kJ / mol和240kJ / mol。发现均匀的成核机理可用于重结晶多通轧钢,即减少40%或更高。

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