Scholay

学术搜索 · AI 审稿 · LaTeX 协作

A Review of Macrosegregation Simulation for the Continuous Casting Process

作者:Yadong Wang, Lifeng Zhang · 发表于:steel research international · 年份:2025 · DOI:10.1002/srin.202500586 · 被引用次数:3 · 研究领域:Solidification and crystal growth phenomena、Metallurgical Processes and Thermodynamics、Aluminum Alloy Microstructure Properties

Macrosegregation is a common defect that occurs on a large‐scale range of 0.01–1 m, and cannot be eliminated during the rolling and homogenization heat treatment process. A comprehensive understanding of its formation mechanisms and accurate predictive modeling is significant for both scientific research and industrial practice. The review first outlines the fundamental mechanisms of macrosegregation formation, including negative segregation in the subsurface, positive segregation in the columnar‐to‐equiaxed transition zone, V‐shaped segregation, and center segregation. The two primary modeling approaches (the continuum model and the multiphase solidification model) are compared in terms of their governing equations and computational efficiency. Recent developments and applications of macrosegregation in both approaches are summarized. Continuum models are advantageous for large‐scale industrial simulations due to their lower computational demand, while multiphase solidification models are preferred when detailed mechanisms of solid–liquid interaction need to be captured. In future simulating studies on macrosegregation, macrosegregation modeling could incorporate machine learning approaches to enable real‐time forecasting. For precise predictions of macrosegregation, the coupling of macrosegregation modeling with formation and growth kinetics of inclusions should be established and used in the simulation of the continuous casting process.