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首页> 外文期刊>Modelling and simulation in materials science and engineering >Modelling of Nb influence on phase transformation behaviours from austenite to ferrite in low carbon steels
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Modelling of Nb influence on phase transformation behaviours from austenite to ferrite in low carbon steels

机译:Nb模拟对低碳钢中奥氏体到铁素体相变行为的影响

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In this paper, a new model has been developed to predict the phase transformation behaviours from austenite to ferrite in Nb-containing low carbon steels. The new model is based on some previous work and incorporates the effects of Nb on phase transformation behaviours, in order to make it applicable for Nb-containing steels. Dissolved Nb atoms segregated at prior austenite grain boundaries increase the critical energy for ferrite nucleation, and thus the ferrite nucleation rate is decreased. Dissolved Nb atoms also apply a solute drag effect to the moving transformation interface, and the ferrite grain growth rate is also decreased. The overall transformation kinetics is then calculated according to the classic Johnson-Mehl-Avrami-Kolmogorov (JMAK) theory. The new model predictions are quite consistent with experimental results for various steels during isothermal transformations or continuous cooling.
机译:在本文中,已经开发了一种新模型来预测含Nb低碳钢中从奥氏体到铁素体的相变行为。新模型基于先前的工作,并结合了Nb对相变行为的影响,以使其适用于含Nb的钢。在先前的奥氏体晶界处偏析的溶解的Nb原子增加了铁素体成核的临界能量,因此降低了铁素体成核速率。溶解的Nb原子也对移动的相变界面施加溶质拖曳效应,并且铁素体晶粒的生长速率也降低。然后根据经典的Johnson-Mehl-Avrami-Kolmogorov(JMAK)理论计算总转化动力学。新的模型预测与等温转变或连续冷却期间各种钢的实验结果非常一致。

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