Kinetic Transition during Ferrite Growth in Fe-C-Mn Medium Carbon Steel

被引:0
作者
C. Capdevila
J. Cornide
K. Tanaka
K. Nakanishi
E. Urones-Garrote
机构
[1] Centro Nacional de Investigaciones Metalúrgicas (CENIM-CSIC),Materalia Research Group
[2] Toyota Central R&D Labs.,Centro de Microscopía y Citometría
[3] Inc,undefined
[4] CREST,undefined
[5] Japan Science and Technology Agency,undefined
[6] Universidad Complutense de Madrid,undefined
来源
Metallurgical and Materials Transactions A | 2011年 / 42卷
关键词
Ferrite; Austenite; Scanning Transmission Electron Microscopy; Medium Carbon Steel; Ferrite Growth;
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摘要
The kinetics of austenite-to-ferrite diffusional transformation in a medium carbon Fe-C-Mn steel was calculated based on classical nucleation and growth theory coupled with CALPHAD multicomponent thermodynamics. The description of the growth rate of proeutectoid ferrite includes a time dependence due to the carbon enrichment in the remaining austenite. The experimentally slower kinetics, especially a stagnating behavior at the later stage, was successfully reproduced when a transition from initial paraequilibrium (PE) to local equilibrium negligible partition (LENP) conditions at the austenite:ferrite (γ/α) interface was assumed. This transition is allowed when the velocity of the moving γ/α interface is slow enough to be compared with Mn diffusivity, which leads to build up of a Mn spike in the interface. This assumption is consistent with a series of scanning transmission electron microscopy (STEM) analyses for Mn and C, which indicates that initial unpartitioned Mn ferrite growth is replaced by partitioned growth.
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页码:3719 / 3728
页数:9
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