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Cellular automaton simulation of microstructure evolution during austenite decomposition under continuous cooling conditions

机译:连续冷却条件下奥氏体分解过程中组织演变的元胞自动机模拟

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A two-dimensional diffusion based model is developed to describe transformation of austenite into ferrite and pearlite under continuous cooling conditions. The nucleation of ferrite is assumed to occur over grain boundaries and the nucleation of pearlite is assumed to be taking place all over the grain and at growing ferritea€“austenite interfaces, when the composition and temperature conditions are favourable. A cellular automaton algorithm, with transformation rules based on this model is used for the growth of ferrite and pearlite. Model predicted results for continuous cooling transformations are verified by comparing the model predicted microstructure features with the experimental measurements for two sets of plain carbon steels of different composition and austenite grain size. Using the model, it is possible to generate results like undercooling to start ferrite and pearlite transformations, which are difficult to obtain experimentally.
机译:建立了基于二维扩散的模型,以描述在连续冷却条件下奥氏体向铁素体和珠光体的转变。当成分和温度条件有利时,假定铁素体的形核发生在晶界上,而珠光体的形核则发生在整个晶粒上以及在生长的铁素体-奥氏体界面上。基于该模型具有转换规则的元胞自动机算法用于铁素体和珠光体的生长。通过将模型预测的显微组织特征与两组不同成分和奥氏体晶粒尺寸的普通碳素钢的实验测量值进行比较,验证了连续冷却转变的模型预测结果。使用该模型,可能会产生过冷等结果,从而开始铁素体和珠光体相变,而这些是很难通过实验获得的。

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