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A Non-steady State Model for the Austenite-to-ferrite Transformation Kinetics under the Non-partition Condition in Fe–C–Mn Alloys

机译:Fe-C-Mn合金非分配条件下奥氏体-铁素体转变动力学的非稳态模型

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A non-steady state model describing the transition from the para-equilibrium to the local equilibrium under the non- or negligible-partition condition is proposed to investigate the austenite to ferrite transformation kinetics in Fe–C–Mn steels. The present model has been developed based on the quasi-steady state model used for calculating the solute drag force by the segregated solute within the ferrite/austenite interface, although the solute-drag force is not calculated in the present model. The calculated Mn profiles are compared with the STEM-EELS observation reported previously by some of the present authors. The temporal evolution of the Mn profiles during PE to NPLE is shown. Combining a simple C diffusion model, the transition path from PE to NPLE on the C–Mn isothermal section of an Fe–C–Mn alloy is also presented.
机译:为了研究Fe–C–Mn钢中奥氏体到铁素体的转变动力学,提出了一个非稳态模型,该模型描述了在非分区或可忽略分区条件下从对平衡过渡到局部平衡的过程。本模型是基于准稳态模型开发的,尽管在本模型中未计算出溶质拖曳力,但是该准稳态模型用于通过铁素体/奥氏体界面内的分离溶质计算溶质拖曳力。将计算出的锰分布图与某些作者先前报道的STEM-EELS观测值进行比较。显示了从PE到NPLE期间Mn分布的时间演变。结合简单的C扩散模型,还给出了在Fe–C–Mn合金的C–Mn等温截面上从PE到NPLE的转变路径。

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