Our research on applied mathematics is in line with the research scope of the journal. The phase-field model is applied to simulate the material and other areas. A phase-field model describing the non-isothermal solidification of an ideal multi-component alloy system is proposed in this paper. The time and space variation of a three-phase-field function and the governing equations of the temperature field are established. The global existence of weak solutions for three-dimensional parabolic differential equations is proved by the Faedo–Galerkin method. The existence of a maximum theorem is also extensively studied
A phase-field model for a general class of multi-phase metallic alloys is now proposed which describ...
The first phase field approaches to solidification of materials were limited to alloys with just two...
A variational formulation of a quantitative phase-field model is presented for nonisothermal solidif...
The phase-field method provides a mathematical description for free-boundary problems associated to ...
Abstract. We review the application of advanced numerical techniques such as adaptive mesh refinemen...
AbstractIn this paper we present some theoretical results for a system of nonlinear partial differen...
In this paper we present some theoretical results for a system of nonlinear partial differential equ...
This paper presents a mathematical analysis to a three-dimensional isothermal model of solidificatio...
AbstractWe employ adaptive mesh refinement, implicit time stepping, a nonlinear multigrid solver and...
Abstract: The paper presents the model of the solidification process of a binary ideal all...
AbstractThe article analyzes a two-dimensional phase-field model for a non-stationary process of sol...
Existence of weak solutions to a phase field model for solidification of alloys is studied. The mode...
Based on the principles of irreversible thermodynamics and on the phase field approach, a general fr...
The article analyzes a two-dimensional phase-field model for a non-stationary process of solidificat...
In this paper we review the current state-of-the-art in the modeling of solidification by phase-fiel...
A phase-field model for a general class of multi-phase metallic alloys is now proposed which describ...
The first phase field approaches to solidification of materials were limited to alloys with just two...
A variational formulation of a quantitative phase-field model is presented for nonisothermal solidif...
The phase-field method provides a mathematical description for free-boundary problems associated to ...
Abstract. We review the application of advanced numerical techniques such as adaptive mesh refinemen...
AbstractIn this paper we present some theoretical results for a system of nonlinear partial differen...
In this paper we present some theoretical results for a system of nonlinear partial differential equ...
This paper presents a mathematical analysis to a three-dimensional isothermal model of solidificatio...
AbstractWe employ adaptive mesh refinement, implicit time stepping, a nonlinear multigrid solver and...
Abstract: The paper presents the model of the solidification process of a binary ideal all...
AbstractThe article analyzes a two-dimensional phase-field model for a non-stationary process of sol...
Existence of weak solutions to a phase field model for solidification of alloys is studied. The mode...
Based on the principles of irreversible thermodynamics and on the phase field approach, a general fr...
The article analyzes a two-dimensional phase-field model for a non-stationary process of solidificat...
In this paper we review the current state-of-the-art in the modeling of solidification by phase-fiel...
A phase-field model for a general class of multi-phase metallic alloys is now proposed which describ...
The first phase field approaches to solidification of materials were limited to alloys with just two...
A variational formulation of a quantitative phase-field model is presented for nonisothermal solidif...