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Elsevier, Journal of Crystal Growth, 3-4(282), p. 515-524

DOI: 10.1016/j.jcrysgro.2005.05.052

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A simple approach toward quantitative phase field simulation for dilute-alloy solidification

Journal article published in 2005 by M. H. Lee, C. J.; Lee M. H.; Lan C. W. Shih ORCID, C. W. Lan
This paper is available in a repository.
This paper is available in a repository.

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Abstract

We present a simple approach that could help quantitative phase field simulation for dilute-alloy solidification. The proposed approach mends the solute trapping problem by using a simple interface model (SIM), which requires only one free parameter. To test the feasibility of this model, a free dendritic growth from a small nucleus is simulated, and a good agreement with the anti-trapping current (ATC) model [Karma, Phys. Rev. Lett. 87 (2001) 115701] is obtained. By further studying the solute trapping effect during directional solidification, we find that the results give, with this model, a good thermodynamic consistence without solute trapping over two-order increment of the solidification speed and the interface thickness. Good agreement with the classical theory is obtained as well. ; 化學工程學系 ; 工學院 ; 期刊論文