학술논문

Three dimensional phase-field simulation for non-isothermal binary alloy solidification: Comparison with LKT theory
Document Type
Academic Journal
Source
China Foundry. November, 2023, Vol. 20 Issue 6, p545, 8 p.
Subject
Algorithm
Alloys -- Comparative analysis
Algorithms -- Comparative analysis
Simulation methods -- Comparative analysis
Specialty metals industry -- Comparative analysis
Language
English
ISSN
1672-6421
Abstract
Using the advanced algorithm combining parallel computing, adaptive mesh re-griding and multigrid methods, quantitative 3D phase-field simulations of non-isothermal solidification of binary alloy were carried out. The 3D phase-field simulation results were compared with the analytical LKT (Lipton, Kurz and Trivedi) theory. For comparison, the simulation and analytical results for 2D cases were also given. The 3D phase-field simulation results support the transport portion of the LKT theory. However, the tip radius and tip velocity predicted by the simulations are not in good agreement with the LKT theory over the whole range of undercooling. The stability parameter calculated from phase-field simulations varies significantly with the Peclet number, indicating that the stability criterion, which assumes that the stability parameter is constant, is invalid. Keywords: 3D phase-field; non-isothermal solidification; free dendritic growth CLC numbers: TP391.9 Document code: A Article ID: 1672-6421(2023)06-545-08
1 Introduction Dendritic growth is the fundamental behavior in materials solidification which determines the final microstructure and solute distribution, and has a significant impact on the mechanical properties of casting [...]