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Numerical Simulations of Equiaxed Dendrite Growth Using Phase Field Method

Keywords: Phase field method,Dendritic growth,Numerical simulation
枝晶生长
,晶体生长,金属材料,数值模拟

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Abstract:

Phase field method offers the prospect of being able to perform realistic numerical experiments on dendrite growth in a metallic system. In this paper, the equiaxed dendrite evolution during the solidification of a pure material was numerically simulated using the phase field model. The equiaxed dendrite growth in a two-dimensional square domain of undercooled melt (nickel) with four-fold anisotropy was simulated. The phase field model equations was solved using the explicit finite difference method on a uniform mesh. The formation of various equiaxed dendrite patterns was shown by a series of simulations, and the effect of anisotropy on equiaxed dendrite morphology was investigated.

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