In rapid alloy solidification the dendrite-growth velocity depends sensitively on the deviations from local interfacial equilibrium manifested by kinetic effects such as solute trapping. The dendrite tip velocity undercooling function was measured in dilute Ni~Zr! over the range 1–25 m/s and 50–255 K using electromagnetic levitation techniques and compared to theoretical predictions of the model of Trivedi and colleagues for dendritic growth with deviations from local interfacial equilibrium. The input parameter to which the model predictions are most sensitive, the diffusive speed VD characterizing solute trapping, was not used as a free parameter but was measured independently by pulsed laser melting techniques, as was another input param...
The dendritic growth of pure materials in undercooled melts is critical to understanding the fundame...
In this work, a stable relation for the dendrite tip velocity V and its tip diameter via the select...
Model predictions for the dendrite growth velocity at low undercoolings are deviating significantly ...
During rapid solidification of undercooled melts deviations from local equilibrium occur at the soli...
A phase-field model for dendritic growth under coupled thermo-solutal control model is presented. Co...
Extensions to the Ivantsov dendrite growth model are presented, which allow for increased solute lev...
Using a phase field model, which fully couples the thermal and solute concentration field, we presen...
Motivated by an important application of dendritic crystals in the form of an elliptical paraboloid,...
Alloy dendrite growth during solidification with coupled thermal-solute-convection fields has been s...
The dendrite growth velocity in Al₇₅Ni₂₅ melts has been measured in a containerless procedure as a f...
The size and shape of the primary dendrite tips determine the principal length scale of the microstr...
Thermodynamic driving forces and growth rates in rapid solidification are analysed. Taking into acco...
We use a phase-field model of dendritic growth in a pure undercooled melt to examine the effect of t...
Dendritic growth velocities in an undercooled melt of pure nickel under static magnetic fields up to...
The dendritic growth of pure materials in undercooled melts is critical to understanding the fundame...
The dendritic growth of pure materials in undercooled melts is critical to understanding the fundame...
In this work, a stable relation for the dendrite tip velocity V and its tip diameter via the select...
Model predictions for the dendrite growth velocity at low undercoolings are deviating significantly ...
During rapid solidification of undercooled melts deviations from local equilibrium occur at the soli...
A phase-field model for dendritic growth under coupled thermo-solutal control model is presented. Co...
Extensions to the Ivantsov dendrite growth model are presented, which allow for increased solute lev...
Using a phase field model, which fully couples the thermal and solute concentration field, we presen...
Motivated by an important application of dendritic crystals in the form of an elliptical paraboloid,...
Alloy dendrite growth during solidification with coupled thermal-solute-convection fields has been s...
The dendrite growth velocity in Al₇₅Ni₂₅ melts has been measured in a containerless procedure as a f...
The size and shape of the primary dendrite tips determine the principal length scale of the microstr...
Thermodynamic driving forces and growth rates in rapid solidification are analysed. Taking into acco...
We use a phase-field model of dendritic growth in a pure undercooled melt to examine the effect of t...
Dendritic growth velocities in an undercooled melt of pure nickel under static magnetic fields up to...
The dendritic growth of pure materials in undercooled melts is critical to understanding the fundame...
The dendritic growth of pure materials in undercooled melts is critical to understanding the fundame...
In this work, a stable relation for the dendrite tip velocity V and its tip diameter via the select...
Model predictions for the dendrite growth velocity at low undercoolings are deviating significantly ...