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Numerical Simulation of Morphology and Microsegregation Evolution during Solidification of Al-Si Alloy
引用本文:Dayong QUO,Yuansheng YANG,Wenhui TONG and Zhuangqi HUInstitute of Metal Research,Chinese Academy of Sciences,Shenyang 110016,China. Numerical Simulation of Morphology and Microsegregation Evolution during Solidification of Al-Si Alloy[J]. 材料科学技术学报, 2004, 20(1): 19-23
作者姓名:Dayong QUO  Yuansheng YANG  Wenhui TONG and Zhuangqi HUInstitute of Metal Research  Chinese Academy of Sciences  Shenyang 110016  China
作者单位:Dayong QUO,Yuansheng YANG,Wenhui TONG and Zhuangqi HUInstitute of Metal Research,Chinese Academy of Sciences,Shenyang 110016,China
摘    要:A stochastic model coupled with transient calculations for the distributions of temperature, solute and velocity during the solidification of binary alloy is presented. The model can directly describe the evolution of both morphology and segregation during dendritic crystal growth. The model takes into account the curvature and growth anisotropy of dendritic crystals. Finite difference method is used to explicitly track the sharp solid liquid (S/L) interface on a fixed Cartesian grid. Two-dimensional mesoscopic calculations are performed to simulate the evolution of columnar and equiaxed dendritic morphologies of an AI-7 wt pct Si alloy. The effects of heat transfer coefficient on the evolution of both the dendrite morphology and segregation patterns during the solidification of binary alloys are analyzed. This model is applied to the solidification of small casting. Columnar-to-equiaxed transition is analyzed in detail. The effects of heat transfer coefficient on final casting structures are also studi


Numerical Simulation of Morphology and Microsegregation Evolution during Solidification of Al-Si Alloy
Dayong GUO,Yuansheng YANG,Wenhui TONG,Zhuangqi HU. Numerical Simulation of Morphology and Microsegregation Evolution during Solidification of Al-Si Alloy[J]. Journal of Materials Science & Technology, 2004, 20(1): 19-23
Authors:Dayong GUO  Yuansheng YANG  Wenhui TONG  Zhuangqi HU
Affiliation:Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016, China
Abstract:A stochastic model coupled with transient calculations for the distributions of temperature, solute and velocity during the solidification of binary alloy is presented. The model can directly describe the evolution of both morphology and segregation during dendritic crystal growth. The model takes into account the curvature and growth anisotropy of dendritic crystals. Finite difference method is used to explicitly track the sharp solid liquid (S/L) interface on a fixed Cartesian grid. Two-dimensional mesoscopic calculations are performed to simulate the evolution of columnar and equiaxed dendritic morphologies of an Al-7 wt pct Si alloy. The effects of heat transfer coefficient on the evolution of both the dendrite morphology and segregation patterns during the solidification of binary alloys are analyzed. This model is applied to the solidification of small casting. Columnar-to-equiaxed transition is analyzed in detail. The effects of heat transfer coefficient on final casting structures are also studied. Final casting structures changing from wholly columnar dendrites to wholly equiaxed dendrites are described. The effect of melt flow on the morphological development during Al-7 wt pct Si alloy soilidification is also described.
Keywords:Stochastic modeling  Solidification  Dendritic microstructure  Microsegregation
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