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Simulation of Microstructure Evolution in Mg Alloys by Phase-Field Methods: A Review

Yongbiao Wang, Yang Zhang

2022EnglishMg alloysmicrostructurephase-fieldsimulationsolidificationrecrystallization

Abstract

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Microstructure is one of the vital factors that determine the mechanical properties of magnesium (Mg) alloys. However, traditional microstructure characterization methods hardly satisfy the needs of tracking the morphological evolution of Mg alloys. With the rapid development of computer simulation, using the phase-field method to simulate the evolution of microstructures in Mg alloys has become the new norm. This article provides a review of the applications of the phase-field method in Mg alloys. First, classic phase-field models and the derived multi-phase and polycrystalline phase-field models are reviewed, then a review of the twin and solid-state phase transition phase-field models was undertaken, and the research progress of phase-field simulation in the solidification, recrystallization, and solid-state phase transformation of Mg alloys, were gradually introduced. In addition, unresolved problems and future directions in this field are discussed.

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Cite This Work

@article{a928ab8a-6f38-4230-8008-ff90ed6961f2,
  title={Simulation of Microstructure Evolution in Mg Alloys by Phase-Field Methods: A Review},
  author={Yongbiao Wang and Yang Zhang},
  year={2022},
  language={English}
}
TY  - JOUR
TI  - Simulation of Microstructure Evolution in Mg Alloys by Phase-Field Methods: A Review
AU  - Yongbiao Wang
AU  - Yang Zhang
PY  - 2022
LA  - English
ER  -

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