Title of article
Phase-field modeling of multi-phase solidification Original Research Article
Author/Authors
Britta Nestler، نويسنده , , Adam A. Wheeler، نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 2002
Pages
4
From page
230
To page
233
Abstract
A phase-field model for a general class of multi-phase metallic alloys is now proposed which describes both multi-phase solidification phenomena as well as polycrystalline grain structures. The model serves as a computational method to simulate the motion and kinetics of multiple phase boundaries and enables the visualization of the diffusion processes and of the phase transitions in multi-phase systems. Numerical simulations are presented which illustrate the capability of the phase-field model to recover a variety of complex experimental growth structures. In particular, the phase-field model can be used to simulate microstructure evolutions in eutectic, peritectic and monotectic alloys. In addition, polycrystalline grain structures with effects such as wetting, grain growth, symmetry properties of adjacent triple junctions in thin film samples and stability criteria at multiple junctions are described by phase-field simulations.
Keywords
Solidification , Phase transitions , Multi-phase alloy systems , Microstructure simulations , Phase field , Diffuse interface models
Journal title
Computer Physics Communications
Serial Year
2002
Journal title
Computer Physics Communications
Record number
1136000
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