An open-source fluid flow and phase-field coupled solidification model has been developed in OpenFOAM to investigate the transient nature of the interface growth direction at different degrees of undercooling for an Fe-0.15 wt.% C binary alloy under isothermal conditions. Though there are works on melt convection effects in binary alloys, none reported the transient nature of the dendrite growth direction since thermodynamic driving force decreases with time at a particular undercooling. Developing a theoretical relation will be helpful in understanding the competition between the crystallographic growth direction and solute transport. Flow decoupled simulation results have a good quantitative agreement with the literature. The bending angl...
We use a phase-field model of dendritic growth in a pure undercooled melt to examine the effect of t...
Using a phase field model, which fully couples the thermal and solute concentration field, we presen...
The topic of this review article is about some aspect of flow during alloy solidification and the co...
Dendrite growth and morphology evolution during solidification have been studied using a phase field...
Alloy dendrite growth during solidification with coupled thermal-solute-convection fields has been s...
International audienceNumerical simulation of solidification and crystal growth has attracted indust...
Phase-field model was employed to quantitatively study the effect of convection on pattern selection...
Numerical simulation of solidification and crystal growth has attracted industrial attention as a po...
A phase field model describing the solidification of a binary alloy is investigated. The location of...
A series of mathematical models and codes are developed to investigate the dendritic growth of Fe-0....
Using state-of-the-art numerical techniques, such as mesh adaptivity, implicit time-stepping and a n...
The quality of welded products is largely determined by solidified structures and dendrite is the pr...
Due to the variations in the local solidification conditions in typical industrial casting processes...
We study the growth of a single dendrite from a small initial seed in an undercooled melt in the pre...
The normal vector of migration direction in the solid-liquid interface of dendrites was used to desc...
We use a phase-field model of dendritic growth in a pure undercooled melt to examine the effect of t...
Using a phase field model, which fully couples the thermal and solute concentration field, we presen...
The topic of this review article is about some aspect of flow during alloy solidification and the co...
Dendrite growth and morphology evolution during solidification have been studied using a phase field...
Alloy dendrite growth during solidification with coupled thermal-solute-convection fields has been s...
International audienceNumerical simulation of solidification and crystal growth has attracted indust...
Phase-field model was employed to quantitatively study the effect of convection on pattern selection...
Numerical simulation of solidification and crystal growth has attracted industrial attention as a po...
A phase field model describing the solidification of a binary alloy is investigated. The location of...
A series of mathematical models and codes are developed to investigate the dendritic growth of Fe-0....
Using state-of-the-art numerical techniques, such as mesh adaptivity, implicit time-stepping and a n...
The quality of welded products is largely determined by solidified structures and dendrite is the pr...
Due to the variations in the local solidification conditions in typical industrial casting processes...
We study the growth of a single dendrite from a small initial seed in an undercooled melt in the pre...
The normal vector of migration direction in the solid-liquid interface of dendrites was used to desc...
We use a phase-field model of dendritic growth in a pure undercooled melt to examine the effect of t...
Using a phase field model, which fully couples the thermal and solute concentration field, we presen...
The topic of this review article is about some aspect of flow during alloy solidification and the co...