A physical model is proposed for the solid/liquid interfacial drag in both globular and dendritic equiaxed solidification. By accounting for the presence of multiple particles and the non-sphericity and porosity of the individual equiaxed crystals, a drag correlation is developed, which is valid over the full range of solid volume fractions. It is shown that neither the solid liquid interfacial area concentration nor the grain size alone is adequate to characterize the interfacial drag for equiaxed endritic rystals in both the free particle and packed bed regimes; thus, the present model is based on a multiple length scale approach. The model predictions are compared to previous analytical and numerical results as well as to experimental da...
A multiparticle diffusion limited aggregation type model is used to simulate diffusion during solidi...
The random packing of equiaxed dendritic grains in metal-alloy solidification is numerically simulat...
In this article, a single-phase, one-domain macroscopic model is developed for studying binary alloy...
International audienceModeling of equiaxed solidification is vital for understanding the solidificat...
International audienceThe packing of free-floating crystal grains during solidification has a strong...
This third article on equiaxed endritic solidification is intended to provide experimental validatio...
A new multiphase Eulerian model for columnar and equiaxed dendritic solidification has been develope...
A deterministic multigrain and multiphase model of equiaxed solidification of binary alloys is propo...
A deterministic multigrain and multiphase model of equiaxed solidification of binary alloys is\ud pr...
A deterministic multigrain and multiphase model of equiaxed solidification of binary alloys is\ud pr...
International audienceMacrosegregation is a result of the interplay of various transport mechanisms,...
International audienceSimulations of equiaxed solidification using two-phase and three-phase models ...
Macrosegregation is a result of the interplay of various transport mechanisms, including natural con...
International audienceWe present a solidification model for equiaxed globular microstructure based o...
Macrosegregation is a result of the interplay of various transport mechanisms, including natural con...
A multiparticle diffusion limited aggregation type model is used to simulate diffusion during solidi...
The random packing of equiaxed dendritic grains in metal-alloy solidification is numerically simulat...
In this article, a single-phase, one-domain macroscopic model is developed for studying binary alloy...
International audienceModeling of equiaxed solidification is vital for understanding the solidificat...
International audienceThe packing of free-floating crystal grains during solidification has a strong...
This third article on equiaxed endritic solidification is intended to provide experimental validatio...
A new multiphase Eulerian model for columnar and equiaxed dendritic solidification has been develope...
A deterministic multigrain and multiphase model of equiaxed solidification of binary alloys is propo...
A deterministic multigrain and multiphase model of equiaxed solidification of binary alloys is\ud pr...
A deterministic multigrain and multiphase model of equiaxed solidification of binary alloys is\ud pr...
International audienceMacrosegregation is a result of the interplay of various transport mechanisms,...
International audienceSimulations of equiaxed solidification using two-phase and three-phase models ...
Macrosegregation is a result of the interplay of various transport mechanisms, including natural con...
International audienceWe present a solidification model for equiaxed globular microstructure based o...
Macrosegregation is a result of the interplay of various transport mechanisms, including natural con...
A multiparticle diffusion limited aggregation type model is used to simulate diffusion during solidi...
The random packing of equiaxed dendritic grains in metal-alloy solidification is numerically simulat...
In this article, a single-phase, one-domain macroscopic model is developed for studying binary alloy...