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A New Physical Model for the Kinetics of the Bainite Transformation

机译:贝氏体转变动力学的新物理模型

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摘要

A model describing the bainite reaction is presented that takes into account the effect of very small austenite grain size. This model considers the displacive approach and uses thermodynamic criteria for the description of the nucleation and growth of bainite sub-units forming either at grain boundaries or autocat-alytically on previous sub-units. The evolution of the austenite composition with the partitioning and redistribution of carbon is estimated as the transformation proceeds. The size of the sub-units is calculated for each composition and temperature. The transformation kinetics, as well as the incomplete reaction phenomenon, are correctly predicted. Furthermore, the influence of the austenite grain size on the bainite transformation rate is addressed in the case of austenite grains smaller than the length of an unconstrained bainite sub-unit. In this case, the observed enhanced nucleation rate is semi-empirically related to the austenite yield strength. This semi-empirical relationship is corroborated with kinetics data from different alloys.
机译:提出了描述贝氏体反应的模型,该模型考虑了非常小的奥氏体晶粒尺寸的影响。该模型考虑了置换方法,并使用热力学标准来描述在晶粒边界处或在前一个子单元上自动催化形成的贝氏体子单元的形核和生长。随着转变的进行,估计了奥氏体成分随碳的分配和再分布的演变。针对每个组成和温度计算子单元的大小。可以正确预测转化动力学以及不完全反应现象。此外,在奥氏体晶粒小于无约束贝氏体亚单元的长度的情况下,解决了奥氏体晶粒尺寸对贝氏体转变速率的影响。在这种情况下,观察到的成核速率提高与奥氏体屈服强度在半经验上有关。来自不同合金的动力学数据证实了这种半经验关系。

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