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Dendritic Morphology Simulation Using the Phase Field Method

Dendritic Morphology Simulation Using the Phase Field Method
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摘要 Dendritic morphology was simulated using a macro- and micro-coupled method. Since the microstructure of a whole casting cannot be easily analyzed, a scheme was developed to calculate the temperature of the whole casting with the microstructure analyzed by selecting one cell in the central region of the casting. The heterogeneous nucleation was described using a Gaussian distribution with the dendritic growth controlled by the solution of the phase field equation. The initial temperature distribution in the micro- domain was obtained by interpolating the cell temperatures near the selected cell with the interface undercooling assumed to be the sum of thermal, solute, and curvature effects. The solute distribution was calculated from the mixed solute conservation equation with noise introduced to produce the side branches. The simulation results agree well with experimental results. Dendritic morphology was simulated using a macro- and micro-coupled method. Since the microstructure of a whole casting cannot be easily analyzed, a scheme was developed to calculate the temperature of the whole casting with the microstructure analyzed by selecting one cell in the central region of the casting. The heterogeneous nucleation was described using a Gaussian distribution with the dendritic growth controlled by the solution of the phase field equation. The initial temperature distribution in the micro- domain was obtained by interpolating the cell temperatures near the selected cell with the interface undercooling assumed to be the sum of thermal, solute, and curvature effects. The solute distribution was calculated from the mixed solute conservation equation with noise introduced to produce the side branches. The simulation results agree well with experimental results.
出处 《Tsinghua Science and Technology》 SCIE EI CAS 2003年第1期79-82,共4页 清华大学学报(自然科学版(英文版)
基金 Supported by the National Natural Science Foundationof China ( Nos.5 9990 470 and 5 0 0 0 5 0 11) and the StateKey Fundamental Research Project of MOST ( No.G2 0 0 0 6 72 0 8- 3)
关键词 phase field method MICROSTRUCTURE numerical simulation phase field method microstructure numerical simulation
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参考文献15

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