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Thermodynamic and kinetic analysis of dynamic strain-induced transformation during hot deformation in plain carbon steels

机译:普通碳素钢热变形过程中动态应变诱发相变的热力学和动力学分析

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摘要

Thermodynamic and kinetic analysis of dynamic strain-induced transformation (DSIT) is presented in this paper. Thermodynamic analysis indicates that DSIT above the Ae_3 could not be massive transformation because the required stored energy is higher than that accumulated by hot deformation. Numerical simulations on ferrite growth kinetics indicate that ferrite nuclei can quickly grow to a size of more than 1 μm at a temperature just above the Ar_3 when paraequilibrium is maintained at the γ/α interface, suggesting that paraequilibrium is the most possible mechanism for DSIT.
机译:本文介绍了动态应变诱导转变(DSIT)的热力学和动力学分析。热力学分析表明,高于Ae_3的DSIT不能进行大规模转化,因为所需的存储能量高于热变形积累的能量。关于铁素体生长动力学的数值模拟表明,当在γ/α界面上保持超平衡时,在Ar_3之上的温度下,铁素体核可以迅速生长到大于1μm的大小,这表明超平衡是DSIT的最可能机制。

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