This study, the effect of constitutional supercooling appearing ahead of the crystallization front and leading to the mushy layer origination is considered. An approximate analytical theory determining the time of mushy layer initiation is constructed. Theoretical predictions are in good agreement with numerical simulations carried out in previous studies
We report an experimental study of the distributions of temperature and solid fraction of growing NH...
A nonlinear problem with two moving boundaries of the phase transition, which describes the process ...
A morphological instability of a mushy layer due to a forced flow in the melt is analysed. The insta...
This study, the effect of constitutional supercooling appearing ahead of the crystallization front a...
It is widely believed that a mushy layer develops at the ICB while the outer core material freezes o...
In this paper, we develop a nonlinear theory of self-oscillatory solidification mode during directio...
Motivated by important applications in materials science and geophysics, I develop a non-linear heat...
This paper is devoted to the mathematical modeling of a combined effect of directional and bulk crys...
We present studies of the solidification of binary aqueous solutions that undergo time-periodic cool...
The theory of motion of the solid/liquid interface in a supercooled melt is developed. Crystal nucle...
Recent verification of the analytical Interdependence model by a numerical solidification model (μMa...
The crystallization mechanism of pure water in a supercooled state is not well understood so far. Th...
Being able to predict the grain formation process and attendant grain size has been a central topic ...
Experiments of directional solidification in a Hele-Shaw cell, 240 mm x 245 mm x 1 mm, were carried ...
A time-dependent process of directional crystallization with a two-phase (mushy) region with allowan...
We report an experimental study of the distributions of temperature and solid fraction of growing NH...
A nonlinear problem with two moving boundaries of the phase transition, which describes the process ...
A morphological instability of a mushy layer due to a forced flow in the melt is analysed. The insta...
This study, the effect of constitutional supercooling appearing ahead of the crystallization front a...
It is widely believed that a mushy layer develops at the ICB while the outer core material freezes o...
In this paper, we develop a nonlinear theory of self-oscillatory solidification mode during directio...
Motivated by important applications in materials science and geophysics, I develop a non-linear heat...
This paper is devoted to the mathematical modeling of a combined effect of directional and bulk crys...
We present studies of the solidification of binary aqueous solutions that undergo time-periodic cool...
The theory of motion of the solid/liquid interface in a supercooled melt is developed. Crystal nucle...
Recent verification of the analytical Interdependence model by a numerical solidification model (μMa...
The crystallization mechanism of pure water in a supercooled state is not well understood so far. Th...
Being able to predict the grain formation process and attendant grain size has been a central topic ...
Experiments of directional solidification in a Hele-Shaw cell, 240 mm x 245 mm x 1 mm, were carried ...
A time-dependent process of directional crystallization with a two-phase (mushy) region with allowan...
We report an experimental study of the distributions of temperature and solid fraction of growing NH...
A nonlinear problem with two moving boundaries of the phase transition, which describes the process ...
A morphological instability of a mushy layer due to a forced flow in the melt is analysed. The insta...