Motivated by an important application of dendritic crystals in the form of an elliptical paraboloid, which widely spread in nature (ice crystals), we develop here the selection theory of their stable growth mode. This theory enables us to separately define the tip velocity of dendrites and their tip diameter as functions of the melt undercooling. This, in turn, makes it possible to judge the microstructure of the material obtained as a result of the crystallization process. So, in the first instance, the steady-state analytical solution that describes the growth of such dendrites in undercooled one-component liquids is found. Then a system of equations consisting of the selection criterion and the undercooling balance that describes a stabl...
In this paper, we develop a theory of stable dendritic growth in undercooled melts in the presence o...
The dendritic branching of ice crystals grown from the vapour at temperatures between −10 and −20°C ...
In this paper, we develop a theory of stable dendritic growth in undercooled melts in the presence o...
Motivated by an important application of dendritic crystals in the form of an elliptical paraboloid,...
A stationary growth of the dendritic tip having the tip shape of an elliptical paraboloid in a binar...
International audienceStable growth of a crystal with dendritic morphology with n-fold symmetry is m...
International audienceStable growth of a crystal with dendritic morphology with n-fold symmetry is m...
International audienceStable growth of a crystal with dendritic morphology with n-fold symmetry is m...
Stable growth of a crystal with dendritic morphology with n-fold symmetry is modeled. Using the line...
Dendritic patterns frequently arise when a crystal grows into its own undercooled melt. Latent heat ...
The free growth of a dendritic crystal having the shape of an elliptical paraboloid is stud-ied theo...
International audienceTwo-phase dendrites are needlelike crystals with a eutectic internal structure...
In this paper, we develop a theory of stable dendritic growth in undercooled melts in the presence o...
Two-phase dendrites are needlelike crystals with a eutectic internal structure growing during solidi...
It is known that ice growing freely from supercooled water has a morphological transition at T =-2.7...
In this paper, we develop a theory of stable dendritic growth in undercooled melts in the presence o...
The dendritic branching of ice crystals grown from the vapour at temperatures between −10 and −20°C ...
In this paper, we develop a theory of stable dendritic growth in undercooled melts in the presence o...
Motivated by an important application of dendritic crystals in the form of an elliptical paraboloid,...
A stationary growth of the dendritic tip having the tip shape of an elliptical paraboloid in a binar...
International audienceStable growth of a crystal with dendritic morphology with n-fold symmetry is m...
International audienceStable growth of a crystal with dendritic morphology with n-fold symmetry is m...
International audienceStable growth of a crystal with dendritic morphology with n-fold symmetry is m...
Stable growth of a crystal with dendritic morphology with n-fold symmetry is modeled. Using the line...
Dendritic patterns frequently arise when a crystal grows into its own undercooled melt. Latent heat ...
The free growth of a dendritic crystal having the shape of an elliptical paraboloid is stud-ied theo...
International audienceTwo-phase dendrites are needlelike crystals with a eutectic internal structure...
In this paper, we develop a theory of stable dendritic growth in undercooled melts in the presence o...
Two-phase dendrites are needlelike crystals with a eutectic internal structure growing during solidi...
It is known that ice growing freely from supercooled water has a morphological transition at T =-2.7...
In this paper, we develop a theory of stable dendritic growth in undercooled melts in the presence o...
The dendritic branching of ice crystals grown from the vapour at temperatures between −10 and −20°C ...
In this paper, we develop a theory of stable dendritic growth in undercooled melts in the presence o...