LAN Hui-fang, LIU Ze-yang, WU Meng-ru. A Kinetic Model for Ferrite-Austenite Transformation[J]. Journal of Northeastern University(Natural Science), 2023, 44(7): 938-943.
[1]Gouné M,Danoix F,gren J,et al. Overview of the current issues in austenite to ferrite transformation and the role of migrating interfaces therein for low alloyed steels[J].Materials Science and Engineerings,2015,92:1-38. [2]van Bohemen S M C,Sietsma J.The kinetics of bainite and martensite formation in steels during cooling[J].Materials Science and Engineering:A,2010,527(24/25):6672-6676. [3]Etesami S A,Enayati M H.Microstructural evolution and recrystallization kinetics of a cold-rolled,ferrite-martensite structure during intercritical annealing[J].Metallurgical and Materials Transactions A,2016,47:3271-3276. [4]Kulakov M,Poole W J,Militzer M.The effect of the initial microstructure on recrystallization and austenite formation in a DP600 steel[J].Metallurgical and Materials Transactions A,2013,44:3564-3576. [5]Zheng C W,Raabe D.Interaction between recrystallization and phase transformation during intercritical annealing in a cold-rolled dual-phase steel:a cellular automaton model[J].Acta Materialia,2013,61(19):5504-5517. [6]Chbihi A,Barbier D,Germain L,et al.Interactions between ferrite recrystallization and austenite formation in high-strength steels[J].Journal of Materials Science,2014,49:3608-3621. [7]Mecozzi M G,Bos C,Sietsma J.A mixed-mode model for the ferrite-to-austenite transformation in a ferrite/pearlite microstructure[J].Acta Materialia,2015,88:302-313. [8]Zener C.Theory of growth of spherical precipitates from solid solution[J].Journal of Applied Physics,1949,20(10):950-953. [9]Hillert M.Diffusion and interface control of reactions in alloys[J].Metallurgical Transactions A,1975,6:5-19. [10]Sietsma J,van der Zwaag S.A concise model for mixed-mode phase transformations in the solid state[J].Acta Materialia,2004,52(14):4143-4152. [11]Krielaart G P,Sietsma J,van der Zwaag S.Ferrite formation in Fe-C alloys during austenite decomposition under non-equilibrium interface conditions[J].Materials Science and Engineering:A,1997,237(2):216-223. [12]Chen H,van der Zwaag S.Modeling of soft impingement effect during solid-state partitioning phase transformations in binary alloys[J].Journal of Materials Science,2011,46(5):1328-1336. [13]陈浩,张璁雨,朱加宁,等.奥氏体/铁素体界面迁移与元素配分的研究进展[J].金属学报,2018,54(2):217-227.(Chen Hao,Zhang Cong-yu,Zhu Jia-ning,et al.Austenite/ferrite interface migration and alloying elements partitioning:an overview[J].Acta Metallurgica Sinica,2018,54(2):217-227.) [14]Huizenga R M,Bos C,Sietsma J.Interface conditions during mixed-mode phase transformations in metals[J].Journal of Materials Science,2008,43(11):3744-3749. [15]Chen H,van der Zwaag S.A general mixed-mode model for the austenite-to-ferrite transformation kinetics in Fe-C-M alloys[J].Acta Materialia,2014,72:1-12. [16]An D,Pan S,Ren Q,et al.A Gibbs energy balance model for the isothermal ferrite-to-austenite transformation[J].Scripta Materialia,2020,178:207-210. [17]Purdy G R,Brechet Y.A solute drag treatment of the effects of alloying elements on the rate of the proeutectoid ferrite transformation in steels[J].Acta Metallurgica et Materialia,1995,43(10):3763-3774. [18]Militzer M,Meczzi M,Sietsma J,et al.Three-dimensional phase field modelling of the austenite-to-ferrite transformation[J].Acta Materialia,2006,54(15):3961-3972. [19]Chen H,Borgenstam A,Odqvist J,et al.Application of interrupted cooling experiments to study the mechanism of bainitic ferrite formation in steels[J].Acta Materialia,2013,61(12):4512-4523. [20]Chen H,Zhu K,Zhao L,et al.Analysis of transformation stasis during the isothermal bainitic ferrite formation in Fe-C-Mn and Fe-C-Mn-Si alloys[J].Acta Materialia,2013,61(14):5458-5468. [21]Borgenstam A,Hglund L,gren J,et al.DICTRA,a tool for simulation of diffusional transformations in alloys[J].Journal of Phase Equilibria,2000,21(3):269-280. [22]Andersson J,Helander T,Hglund L,et al.Thermo-Calc & DICTRA,computational tools for materials science[J].Calphad,2002,26(2):273-312. [23]Fazeli F,Militzer M.Application of solute drag theory to model ferrite formation in multiphase steels[J].Metallurgical and Materials Transactions A,2005,36(6):1395-1405. [24]An D,Baik S,Pan S,et al.Evolution of microstructure and carbon distribution during heat treatments of a dual-phase steel:modeling and atom-probe tomography experiments[J].Metallurgical and Materials Transactions A,2019,50(1):436-450.