A vector order parameter phase field model derived from a grand potential functional is presented as an alternative approach for modeling polycrystalline solidification of alloys. In this approach, the grand potential density is designed to contain a discrete set of finite wells, a feature that naturally allows for the growth and controlled interaction of multiple grains using a single vector field. We verify that dendritic solidification in binary alloys follows the well-established quantitative behavior in the thin interface limit. In addition, it is shown that grain boundary energy and solute back-diffusion are quantitatively consistent with earlier theoretical work, with grain boundary energy being controlled through a simple solid-soli...
A phase field theory of polycrystalline solidification is presented that describes the nucleation an...
The normal vector of migration direction in the solid-liquid interface of dendrites was used to desc...
A phase field model of rapid multi–grain growth is developed. Using a multi–phase model for polycrys...
A vector order parameter phase field model derived from a grand potential functional is presented as...
Some models of solidification are developed by treating the solid in a more realistic manner than th...
A phase-field model for a general class of multi-phase metallic alloys is now proposed which describ...
doi:10.1088/0953-8984/16/41/R01 We review recent advances made in the phase field modelling of polyc...
Advances in the orientation-field-based phase-field (PF) models made in the past are reviewed. The m...
Advances in the orientation-field-based phase-field (PF) models made in the past are reviewed. The m...
Advances in the orientation-field-based phase-field (PF) models made in the past are reviewed. The m...
Advances in the orientation-field-based phase-field (PF) models made in the past are reviewed. The m...
Abstract. We present a phase field theory for binary crystal nucleation. Using the physical interfac...
The ability to model phase transitions in complex (i.e. multi-component and multi- phase) alloys, ac...
We present a simple approach that could help quantitative phase field simulation for dilute-alloy so...
ABSTRACT This paper presents a discontinuous finite element computational framework for the numerica...
A phase field theory of polycrystalline solidification is presented that describes the nucleation an...
The normal vector of migration direction in the solid-liquid interface of dendrites was used to desc...
A phase field model of rapid multi–grain growth is developed. Using a multi–phase model for polycrys...
A vector order parameter phase field model derived from a grand potential functional is presented as...
Some models of solidification are developed by treating the solid in a more realistic manner than th...
A phase-field model for a general class of multi-phase metallic alloys is now proposed which describ...
doi:10.1088/0953-8984/16/41/R01 We review recent advances made in the phase field modelling of polyc...
Advances in the orientation-field-based phase-field (PF) models made in the past are reviewed. The m...
Advances in the orientation-field-based phase-field (PF) models made in the past are reviewed. The m...
Advances in the orientation-field-based phase-field (PF) models made in the past are reviewed. The m...
Advances in the orientation-field-based phase-field (PF) models made in the past are reviewed. The m...
Abstract. We present a phase field theory for binary crystal nucleation. Using the physical interfac...
The ability to model phase transitions in complex (i.e. multi-component and multi- phase) alloys, ac...
We present a simple approach that could help quantitative phase field simulation for dilute-alloy so...
ABSTRACT This paper presents a discontinuous finite element computational framework for the numerica...
A phase field theory of polycrystalline solidification is presented that describes the nucleation an...
The normal vector of migration direction in the solid-liquid interface of dendrites was used to desc...
A phase field model of rapid multi–grain growth is developed. Using a multi–phase model for polycrys...