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- W1974962016 abstract "The phase-field models for binary and ternary alloys are introduced, and the governing equations and phase-field parameters for dilute alloys are derived at a thin interface limit. The phase-field simulations on isothermal dendrite growth for Fe-C, Fe-P and Fe-C–P alloys are carried out and the effect of the ternary alloying element on dendrite growth is examined. The secondary arm spacing for Fe-C, Fe-P and Al–Cu alloys is numerically predicted using the phase-field model and compared to the experimental data. The change in the arm spacing, and the exponent of local solidification time depending on alloy is systematically examined by imposing artificial set of physical properties. The phase-field simulation for the microstructure evolution during rapid solidification is also successfully carried out. Through the numerical examples, the wide potentiality of the phase-field model to the applications on solidification has been demonstrated." @default.
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- W1974962016 date "2002-04-01" @default.
- W1974962016 modified "2023-10-03" @default.
- W1974962016 title "Phase-field model of dendritic growth" @default.
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- W1974962016 doi "https://doi.org/10.1016/s0022-0248(01)01891-7" @default.
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