Multi-phase field simulation of multi-grain peritectic transition in multiple phase transformation

被引:0
作者
Li Feng
Jun-he Zhong
Chang-sheng Zhu
Jun Wang
Guo-sheng An
Rong-zhen Xiao
机构
[1] Lanzhou University of Technology,College of Materials and Engineering
[2] Lanzhou University of Technology,State Key Laboratory of Advanced Processing and Recycling of Non
来源
China Foundry | 2020年 / 17卷
关键词
phase field; Fe-C binary alloy; peritectic transformation; microstructure; numerical simulation; TP391.9; A;
D O I
暂无
中图分类号
学科分类号
摘要
Taking Fe-C binary alloy as an example, based on the multi-phase field model, the nucleation and growth of δ phase, peritectic reaction, peritectic transformation, and the growth of subsequent austenite are simulated. Effects of the nucleation site of austenite on the peritectic reaction rate and the starting time of the peritectic transformation were studied. The simulation results show that the γ phase, as a shell, surrounds the δ phase and grows rapidly when the peritectic reaction occurs between the dendritic δ grains, and a layer of γ phase shell is formed around δ phase after the peritectic reaction. After the δ phase is surrounded by γ phase completely, the membrane shell separates the L phase from the δ phase, so that the phase transfers from peritectic reaction to peritectic transformation. During the peritectic transformation, since the solute diffusion coefficient of the liquid phase is much greater than that of the solid phase, the average growth rate of austenite in the liquid phase is visibly higher than that of the δ phase. The peritectic reaction rate is related to the curvature of the nucleation site of the γ phase on the δ phase grains. The peritectic reaction rate at the large curvatures is faster than that at small curvatures.
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页码:357 / 363
页数:6
相关论文
共 38 条
  • [1] Feng L(2019)Phase-field simulation of secondary dendrites growth in directional solidification of binary alloys China Foundry 16 97-104
  • [2] Lu N(2008)Simulation of grain growth by phase field method Journal of Xi’an University of Technology 28 360-365
  • [3] Gao Y-l(2015)Growth competition of columnar dendritic grains: A phase-field study Acta Materialia 82 64-83
  • [4] Liu J K(2008)Phase-field model of isothermal solidification of binary alloy with multiple grains Acta Physica Sinica 57 1084-1090
  • [5] Niu Y(1974)On equilibrium and non-equilibrium peritectic transformations Acta Metallurgica 22 677-686
  • [6] Yan W(2006)Kinetics of the peritectic phase transformation: In-situ measurements and phase field modeling Metallurgical & Materials Transactions A 37 985-994
  • [7] Tourret D(2017)A phase-field study on the peritectic phase transition in Fe-C alloys Acta Materialia 132 565-575
  • [8] Karma A(2006)Phase-field research of microstructure evolution for directionally solidified peritectic transition II. Simulation of nucleation-controlled microstructure Acta Metallurgica Sinica 42 606-610
  • [9] Feng L(1999)Phase field simulations of the peritectic solidification of Fe-C Journal of Crystal Growth 198 1275-1280
  • [10] Wang Z P(2004)Phase-field modeling of eutectic solidification Journal of Crystal Growth 261 135-158