材料科学技术(英文版)2021,Vol.74Issue(15) :155-167.

Revisiting dynamics and models of microsegregation during polycrystalline solidification of binary alloy

Tongzhao Gong Yun Chen Shanshan Li Yanfei Cao Dianzhong Li Xing-Qiu Chen Guillaume Reinhart Henri Nguyen-Thi
材料科学技术(英文版)2021,Vol.74Issue(15) :155-167.

Revisiting dynamics and models of microsegregation during polycrystalline solidification of binary alloy

Tongzhao Gong 1Yun Chen 2Shanshan Li 1Yanfei Cao 2Dianzhong Li 2Xing-Qiu Chen 2Guillaume Reinhart 3Henri Nguyen-Thi3
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作者信息

  • 1. Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Sciences, Shenyang, 110016, China;School of Materials Science and Engineering, University of Science and Technology of China, Hefei, 230026, China
  • 2. Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Sciences, Shenyang, 110016, China
  • 3. Aix Marseille Univ, Université de Toulon, CNRS, IM2NP, Marseille, France
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Abstract

Microsegregation formed during solidification is of great importance to material properties.The conventional Lever rule and Scheil equation are widely used to predict solute segregation.However,these models always fail to predict the exact solute concentration at a high solid fraction because of theoretical assumptions.Here,the dynamics of microsegregation during polycrystalline solidification of refined Al-Cu alloy is studied via two-and three-dimensional quantitative phase-field simulations.Simulations with different grain refinement level,cooling rate,and solid diffusion coefficient demonstrate that solute segregation at the end of solidification (i.e.when the solid fraction is close to unit) is not strongly correlated to the grain morphology and back diffusion.These independences are in accordance with the Scheil equation which only relates to the solid fraction,but the model predicts a much higher liquid concentration than simulations.Accordingly,based on the quantitative phase-field simulations,a new analytical microsegregation model is derived.Unlike the Scheil equation or the Lever rule that respectively overestimates or underestimates the liquid concentration,the present model predicts the liquid concentration in a pretty good agreement with phase-field simulations,particularly at the late solidification stage.

Key words

Microsegregation/Grain refinement/Cooling rate/Back diffusion/Phase-field method

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基金项目

This work was supported by the Science Challenge Project(TZ2016004)

Youth Innovation Promotion Association CAS()

Youth Talent program of Shenyang National Laboratory for Materials Science(L2019F08)

Special Scientific Projects of Inner Mongolia,and French National Space Center (CNES),Convention(N°174800/00)

出版年

2021
材料科学技术(英文版)
中国金属学会 中国材料研究学会 中国科学院金属研究所

材料科学技术(英文版)

CSTPCDCSCDSCI
影响因子:0.657
ISSN:1005-0302
参考文献量42
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