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Phase Field Study on the Austenite/Ferrite Transition in Low Carbon Steel

机译:低碳钢中奥氏体/铁素体转变的相场研究

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摘要

A phase field model for the austenite/ferrite transition, including the elastic effect caused by the volume mismatch between the austenite and the ferrite, has been presented and applied to the nucleation and growth of the ferrite in the austenite with various cooling rates. The ferrite particles nucleated at the triple junctions of the austenite grains initially grow fast along the grain boundaries. After the austenite grain boundaries are completely wetted by the ferrite, the ferrite starts to grow to the inside of the austenite grain. While it suppresses the growth of the ferrite at the early stage, the elastic field due to the austenite-ferrite volume difference enhances the growth of the ferrite particles at the late stage.
机译:已经提出了奥氏体/铁素体转变的相场模型,包括由奥氏体和铁素体之间的体积失配引起的弹性效应,并将其应用于具有不同冷却速率的奥氏体中铁素体的形核和生长。在奥氏体晶粒的三重结处成核的铁素体粒子最初沿晶界快速生长。在奥氏体晶界被铁素体完全润湿后,铁素体开始向奥氏体晶粒内部生长。尽管在早期抑制了铁素体的生长,但由于奥氏体-铁素体的体积差异而产生的弹性场促进了后期铁素体颗粒的生长。

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