The process of particle nucleation and growth at the initial and intermediate stages of bulk crystallization in metastable liquids is studied. An integrodifferential model of balance and kinetic equations with corresponding boundary and initial conditions is formulated with allowance for non-stationary temperature/concentration field around each evolving particle. The model is solved using the saddle-point technique in a parametric form. The particle-radius distribution function, supercooling/supersaturation of liquid, total number of particles in liquid and their average size are found analytically. The melt supercolling (solution supersaturation) decreases with time due to the latent heat of phase transformation released by evolving cryst...
In this paper, the growth rates of spherical and ellipsoidal crystals evolving in metastable melts a...
Motivated by a wide range of applications in various fields of physics and materials science, we con...
A mathematical model describing crystal growth in a supercooled binary melt in the presence of heat ...
The process of particle nucleation and growth at the initial and intermediate stages of bulk crystal...
A complete analytical solution of an integro-differential model describing the transient nucleation ...
The article addresses theoretical approaches in describing the evolution of particulate assemblages ...
The processes of bulk crystallization of a supercooled binary melt where the nucleation and growth o...
In this paper, an analytical method of solving the integro-differential system of kinetic and balanc...
The theory of nucleation and evolution of particles in supercooled and supersaturated liquids is dev...
This paper deals with an approximate analytical solution of an integro-differential model describing...
This manuscript is devoted to the nonlinear dynamics of particulate assemblages in metastable liquid...
The process of ongoing nucleation and evolution of particles in a metastable liquid caused by extern...
Motivated by a wide range of applications in various fields of physics and materials science, we con...
Motivated by a large number of applications, we consider the process of non-stationary growth of sph...
This paper develops a theory of the evolution of a polydisperse ensemble of ellipsoidal crystals in ...
In this paper, the growth rates of spherical and ellipsoidal crystals evolving in metastable melts a...
Motivated by a wide range of applications in various fields of physics and materials science, we con...
A mathematical model describing crystal growth in a supercooled binary melt in the presence of heat ...
The process of particle nucleation and growth at the initial and intermediate stages of bulk crystal...
A complete analytical solution of an integro-differential model describing the transient nucleation ...
The article addresses theoretical approaches in describing the evolution of particulate assemblages ...
The processes of bulk crystallization of a supercooled binary melt where the nucleation and growth o...
In this paper, an analytical method of solving the integro-differential system of kinetic and balanc...
The theory of nucleation and evolution of particles in supercooled and supersaturated liquids is dev...
This paper deals with an approximate analytical solution of an integro-differential model describing...
This manuscript is devoted to the nonlinear dynamics of particulate assemblages in metastable liquid...
The process of ongoing nucleation and evolution of particles in a metastable liquid caused by extern...
Motivated by a wide range of applications in various fields of physics and materials science, we con...
Motivated by a large number of applications, we consider the process of non-stationary growth of sph...
This paper develops a theory of the evolution of a polydisperse ensemble of ellipsoidal crystals in ...
In this paper, the growth rates of spherical and ellipsoidal crystals evolving in metastable melts a...
Motivated by a wide range of applications in various fields of physics and materials science, we con...
A mathematical model describing crystal growth in a supercooled binary melt in the presence of heat ...