PDF

Advances in Metal Microstructure Simulation and Analysis

Meng Liu, Hongrui Zhou

2026Englishmetal microstructurenumerical simulationgrain growthphase transformationrecrystallizationmultiscale modeling

Abstract

Language:

Numerical simulation of metal microstructure evolution is essential for material design and performance optimization. This paper reviews major simulation methods for key evolution mechanisms, including recrystallization, grain growth, slip, twinning, and phase transformation. The reviewed methods are classified into atomistic models, discrete-field models, and continuous-field models. Molecular dynamics (MD) is discussed as an independent atomistic approach, with emphasis on its role in revealing atomic-scale mechanisms, calibrating mesoscale parameters, and bridging atomistic, mesoscale, and continuum simulations. Discrete-field methods, including Monte Carlo, cellular automata, and vertex models, are compared with continuous-field methods, including artificial neural networks, phase field models, finite element methods, and level-set methods. Furthermore, a semi-quantitative evaluation matrix based on accuracy, computational cost, scalability, and applicability is established to clarify the practical trade-offs among different methods. The results show that no single method is universally optimal; instead, method selection should depend on the dominant physical mechanism, target length scale, required accuracy, and available computational resources. This review provides methodological guidance for multiscale microstructure simulation and supports future applications in precision machining, additive manufacturing, and process parameter optimization.

Download

Cite This Work

@article{c0ab6950-44b1-46dd-a44e-eb94de33e52b,
  title={Advances in Metal Microstructure Simulation and Analysis},
  author={Meng Liu and Hongrui Zhou},
  year={2026},
  language={English}
}
TY  - JOUR
TI  - Advances in Metal Microstructure Simulation and Analysis
AU  - Meng Liu
AU  - Hongrui Zhou
PY  - 2026
LA  - English
ER  -

Similar Items

State-of-the-Art Review of the Simulation of Dynamic Recrystallization

Xin Liu, Jiachen Zhu

The evolution of microstructures during the hot working of metallic materials determines their workability and properties. Recrystallization is an imp

2024EnglishPDF

Cellular Automata and Phase-Field Modeling of Microstructure Evolution in Metal Additive Manufacturing: Recent Advances, Hybrid Frameworks, and Pathways to Predictive Control

Łukasz Łach

Metal additive manufacturing (AM) generates complex microstructures through extreme thermal gradients and rapid solidification, critically influencing

2026EnglishPDF

Research Advances in Large Deformation Analysis and Applications of the Material Point Method

Changhong Zhou, Qing Zhong

Large deformation analysis is a crucial foundation for studying the nonlinear behavior and progressive damage of materials and structures. Traditional

2025EnglishPDF

A Review on Heat Treatment of Cast Iron: Phase Evolution and Mechanical Characterization

Ojo Jeremiah Akinribide, Olasupo Daniel Ogundare

The isothermal heat treatment process has been identified as a unique process of fabricating exceptional graphite cast iron due to its remarkable mech

2022EnglishPDF

projet de jeannette sale polytechnique 2025

2025enPDF

Digital-Twin-Based Coordinated Optimal Control for Steel Continuous Casting Process

Jian Yang, Zhenping Ji

A digital-twin-model-based optimal control system is presented for the steel continuous casting process. The system is designed for the coordinated op

2023EnglishPDF