A mathematical model has been established to predict the formation of macrosegregation for a unidirectional solidification of aluminum-copper alloys cooled from the bottom. The model, based on the continuum formulation, allows the calculation of transient distributions of temperature, velocity, and species in the solidifying alloy caused by thermosolutal convection and shrinkage-induced fluid flow. Positive segregation in the casting near the bottom (inverse segregation) is found, which is accompanied by a moving negative-segregated mushy zone. The effects of shrinkage-induced fluid flow and solute diffusion on the formation of macrosegregation are examined. It is found that the redistribution of solute in the solidifying alloy is caused by...
Macrosegregation in metal casting can be caused by thermal and solutal melt convection, and the tran...
Solidification processes are complex in nature, involving multiple phases and several length scales....
International audienceThe general aim of this work is to build a model of solidification that includ...
A mathematical model has been developed to simulate the inverse segregation for a unidirectional sol...
In this article macrosegregation and porosity formation are investigated by a numerical modeling tec...
The formation of macrosegregation in a rectangular ingot with reduced cross section from the riser t...
In this paper, the modeling of the solidification of Al-4Cu alloy was studied. The calculation code ...
The evolution of macrosegregation, appearing in the form of negative- and positive-segregated bands,...
One of the major factors controlling macrosegregation and shrinkage porosity in castings is the exte...
One of the major factors controlling macrosegregation and shrinkage porosity in castings is the exte...
In this article macrosegregation phenomena in ternary Al-Cu-Si alloys are investigated by a numerica...
In this article, a single-phase, one-domain macroscopic model is developed for studying binary alloy...
In this article, a single-phase, one-domain macroscopic model is developed for studying binary alloy...
Microsegregation is the solute redistribution of alloying elements during the solidification at a mi...
Direct chill (DC) casting of aluminum involves alloys employing different solute elements. In this a...
Macrosegregation in metal casting can be caused by thermal and solutal melt convection, and the tran...
Solidification processes are complex in nature, involving multiple phases and several length scales....
International audienceThe general aim of this work is to build a model of solidification that includ...
A mathematical model has been developed to simulate the inverse segregation for a unidirectional sol...
In this article macrosegregation and porosity formation are investigated by a numerical modeling tec...
The formation of macrosegregation in a rectangular ingot with reduced cross section from the riser t...
In this paper, the modeling of the solidification of Al-4Cu alloy was studied. The calculation code ...
The evolution of macrosegregation, appearing in the form of negative- and positive-segregated bands,...
One of the major factors controlling macrosegregation and shrinkage porosity in castings is the exte...
One of the major factors controlling macrosegregation and shrinkage porosity in castings is the exte...
In this article macrosegregation phenomena in ternary Al-Cu-Si alloys are investigated by a numerica...
In this article, a single-phase, one-domain macroscopic model is developed for studying binary alloy...
In this article, a single-phase, one-domain macroscopic model is developed for studying binary alloy...
Microsegregation is the solute redistribution of alloying elements during the solidification at a mi...
Direct chill (DC) casting of aluminum involves alloys employing different solute elements. In this a...
Macrosegregation in metal casting can be caused by thermal and solutal melt convection, and the tran...
Solidification processes are complex in nature, involving multiple phases and several length scales....
International audienceThe general aim of this work is to build a model of solidification that includ...