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- Phase-field model for binary alloys | Phys. Rev. E
We present a phase-field model (PFM) for solidification in binary alloys, which is found from the phase-field model for a pure material by direct comparison of the variables for a pure material solidification and alloy solidification
- Phase-field model for binary alloys - ADS
We present a phase-field model (PFM) for solidification in binary alloys, which is found from the phase-field model for a pure material by direct comparison of the variables for a pure material solidification and alloy solidification
- Phase-Field Model for Binary Alloys | Request PDF - ResearchGate
We present a phase-field model (PFM) for solidification in binary alloys, which is found from the phase-field model for a pure material by direct comparison of the variables for a pure
- Phase-field model with a reduced interface diffuseness
A unified dimensionless thin interface phase field equation has been derived for pure material and alloy solidification under the assumption that coexisting phases at a point in a system have equal chemical potential
- Kim, S. G. , Kim, W. T. and Suzuki, T. (1998) Interfacial Compositions of . . .
Kim, S G , Kim, W T and Suzuki, T (1998) Interfacial Compositions of Solid and Liquid in a Phase-Field Model with Finite Interface Thickness for Isothermal Solidification in Binary Alloys
- Kim-Kim-Suzuki Model - MOOSE
The Kim-Kim-Suzuki (KKS) model in its current implementation is an implementation of the two-phase model presented in Kim et al (1999)
- Interfacial compositions of solid and liquid in a phase-field . . .
A two-phase model is presented for simulating the injection mold filling process including the effect of transient melt solidification, i e , the phase change effect
- The Phase-Field Method
This phase field model was first proposed in the paper 1 as a binary model for solidification of multicomponent systems Since then it has been developed and applied to study and model a range of microstructure evolution phenomenon from eutectic solidification to precipitate growth
- Phase-Field Modeling of Solidification | Springer Nature Link
S G Kim, W T Kim, and T Suzuki, “Interfacial compositions of solid and liquid in a phase-field model with finite interface thickness for isothermal solidification in binary alloys”, Phys Rev E, 58, 3316–3323, 1998
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