Anisotropic effect of equiaxed dendritic growth in a undercooled molten metal
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摘要: 基于Karma-Rappel相場模型,模擬了純金屬在量綱為1過冷度為0.45時等軸枝晶生長過程中晶粒形貌和溫度場的變化.研究了不同各向異性條件下等軸晶晶粒形貌的演化過程.模擬結果顯示,各項異性系數的大小對晶粒的形貌有重要影響.當各項異性為0.05時,枝晶在生長過程中出現了"頸縮"現象,枝晶中溫度梯度最大的方向總是與最優生長方向保持一致.Abstract: Based on the Karrna-Rappel phase field model, the equiaxed dendritic growth and change in temperature field in a pure molten metal were numerically simulated at an initial dimensionless supercooling of 0.45. Morphological evolvement of dendrites at various anisotropic coefficients was investigated. The result shows that anisotropic coefficient significantly affects the dendrite morphology. During dendritic growth, obvious necking phenomenon appears as the anisotropic coefficienf is 0.05. The preferred growth direction of dendrites is always kept consistent with that of the highest temperature gradient.
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Key words:
- molten metal /
- dendritic growth /
- anisotropy /
- phase field /
- numerical simulation
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