Phase-field modeling of free dendritic growth of magnesium based alloy

Author:

Duan Pei-Pei ,Xing Hui ,Chen Zhi ,Hao Guan-Hua ,Wang Bi-Han ,Jin Ke-Xin ,

Abstract

In this paper, the process of the free dendritic growth of Mg-0.5 wt.%Al alloy in the basal plane (0001) is simulated in two-dimensional system by using a quantitative phase-field model. A convergence study is carried out to choose the optimal coupling parameter λ and grid width Δx/W0 in simulation. Then we systematically discuss the effects of the anisotropic strength ε and the supersaturation Ω on dendritical tip growth velocity, radius, Péclet number, and stability parameter σ *. Results show that the stability parameter σ * defined by the theory of microscopic solvability is a function of the anisotropy strength ε, i.e., σ* ≅ ε1.81905, which is obviously closest to σ * (ε) ≅ ε 1.75 obtained from the analytical solution. Moreover, for Ω σ * is approximately a constant while it sharply and monotonically decreases with the augment of the value of ε for Ω > 0.6. This indicates that there is a transition from solute-controlled dendrite to kinetic dendrite as Ω increases. Furthermore, the transition of the growth pattern from the snow-like to the circle-like patterns occurs as Ω increases.

Publisher

Acta Physica Sinica, Chinese Physical Society and Institute of Physics, Chinese Academy of Sciences

Subject

General Physics and Astronomy

Reference31 articles.

1. Gurevich S, Amoorezaei M, Montiel D, Provatas N 2012 Acta Mater. 60 3287

2. Shi C X, Li H D, Wang D Z, Li Y Y, Zuo T Y 2001 Mater. Rev. 15 5 (in Chinese) [师昌绪, 李恒德, 王淀佐, 李依依, 左铁镛 2001 材料导报 15 5]

3. Cao R C, Ke W, Xu Y B 2001 Acta Metal. Sin. 51 2 (in Chinese) [曹荣昌, 柯伟, 徐永波 2001 金属学报 51 2]

4. Asta M, Beckermann C, Karma A, Kurz W, Napolitano R, Plapp M 2009 Acta Mater. 57 941

5. Amoorezaei M, Gurevich S, Provatas N 2012 Acta Mater. 60 657

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