Rapid solidification gives rise to solute trapping, which decreases solute partitioning and alters equilibrium solidification velocity-undercooling relationships. These effects influence microsegregation, solidification morphology, and the emergent microstructure length scales. Here, we review solute trapping and solute drag in rapid solidification in terms of theory, simulation methods, and experimental techniques. The basic theory to describe solute trapping is contained in the continuous growth model. This model breaks down at high solidification velocities, where solidification transitions abruptly to complete trapping, a limit that can be captured with the local nonequilibrium model. Solute trapping theories contain unknown parameters....
A phase-field model for solidification of a binary alloy is developed that includes gradient energy ...
A simple model for solute trapping during rapid solidification is presented in terms of a single unk...
We present a simple approach that could help quantitative phase field simulation for dilute-alloy so...
Rapid solidification gives rise to solute trapping, which decreases solute partitioning and alters e...
During rapid solidification, solute may be incorporated into the solid phase at a concentration sign...
The research program reported here is focused on critical issues that represent conspicuous gaps in ...
The phase-field model of Echebarria, Folch, Karma, and Plapp [Phys. Rev. E 70 (2004) 061604] is ext...
The phase-field model of Echebarria, Folch, Karma, and Plapp [Phys. Rev. E 70, 061604 (2004)] is ext...
Solute trapping is an important phenomenon in rapid solidification of alloys, for which the continuo...
A conceptual foundation for the study of local non-equilibrium solute diffusion under rapid solidifi...
The phase-field model of Wheeler, Boettinger and McFadden is extended to the case of fast solidifica...
The phase-field method has been widely used to study the rapid solidification processes such as addi...
A phase-field model for isothermal solidification of a binary alloy is developed that includes gradi...
We present the results of non-equilibrium molecular dynamics simulations for the growth of a solid b...
We explore how the inclusion of an anti-trapping current within a phase-field model of coupled therm...
A phase-field model for solidification of a binary alloy is developed that includes gradient energy ...
A simple model for solute trapping during rapid solidification is presented in terms of a single unk...
We present a simple approach that could help quantitative phase field simulation for dilute-alloy so...
Rapid solidification gives rise to solute trapping, which decreases solute partitioning and alters e...
During rapid solidification, solute may be incorporated into the solid phase at a concentration sign...
The research program reported here is focused on critical issues that represent conspicuous gaps in ...
The phase-field model of Echebarria, Folch, Karma, and Plapp [Phys. Rev. E 70 (2004) 061604] is ext...
The phase-field model of Echebarria, Folch, Karma, and Plapp [Phys. Rev. E 70, 061604 (2004)] is ext...
Solute trapping is an important phenomenon in rapid solidification of alloys, for which the continuo...
A conceptual foundation for the study of local non-equilibrium solute diffusion under rapid solidifi...
The phase-field model of Wheeler, Boettinger and McFadden is extended to the case of fast solidifica...
The phase-field method has been widely used to study the rapid solidification processes such as addi...
A phase-field model for isothermal solidification of a binary alloy is developed that includes gradi...
We present the results of non-equilibrium molecular dynamics simulations for the growth of a solid b...
We explore how the inclusion of an anti-trapping current within a phase-field model of coupled therm...
A phase-field model for solidification of a binary alloy is developed that includes gradient energy ...
A simple model for solute trapping during rapid solidification is presented in terms of a single unk...
We present a simple approach that could help quantitative phase field simulation for dilute-alloy so...