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Interaction between recrystallization and phase transformation during intercritical annealing in a cold-rolled dual-phase steel: A cellular automaton model

机译:冷轧双相钢临界退火过程中再结晶与相变的相互作用:元胞自动机模型

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摘要

The concurrent ferrite recrystallization and austenitic transformation during intercritical annealing of cold-rolled DP steels is investigated by cellular automaton (CA) modeling. The simulations provide insight into the microstructural phenomena that result from the interaction of primary recrystallization and phase transformation. We find that the interaction between ferrite recrystallization and aus-tenite formation affects not only the transformation kinetics but also the morphology and spatial distribution of the austenite. From this we can interpret experimental data of the observed temperature-dependent hardness and its dependence on the two metallurgical processes. The influence of the initial heating rate on subsequent isothermal transformation kinetics and the microstructure evolution is also obtained by the model.
机译:采用元胞自动机(CA)建模研究了冷轧低压钢在临界退火过程中同时发生的铁素体再结晶和奥氏体转变.通过模拟,可以深入了解初级再结晶和相变相互作用产生的微观结构现象。研究发现,铁素体再结晶与Aus-tenite形成的相互作用不仅影响奥氏体的转化动力学,还影响奥氏体的形貌和空间分布。由此,我们可以解释观察到的温度相关硬度及其对两种冶金过程的依赖性的实验数据。该模型还得到了初始加热速率对后续等温转变动力学和微观结构演变的影响。

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