A quantitative phase-field model, based on a grand potential functional is derived for the case of multi-component alloys along with the thin-interface asymptotics. In addition, a framework is developed, which allows the coupling of the thermodynamic databases to the phase-field model through the construction of simplistic free energies
Mechanical properties of castings and the quality of workpieces can be traced back to the structure ...
We present a method for coupling current phase field models of alloy solidification into general con...
In this thesis we study the solidification process of systems with intrinsicanisotropy. We aim at fi...
Phase-field modeling has spread to a variety of applications involving phase transformations. ...
We give an overview of contributions made to the computational phase-field modelling of alloy solidi...
The microstructure resulting from the solidification of alloys can greatly affect their properties, ...
This paper provides a fundamental overview of the phase field theory addressing some of the basic co...
This paper demonstrates that the standard approach to the modelling of multi-phase field dynamics fo...
The utilization of thermodynamic and mobility data plays a major role in quantitative phase-field mo...
The ability to model phase transitions in complex (i.e. multi-component and multi- phase) alloys, ac...
We derive a phase field model which approximates a sharp interface model for solidification of a mul...
AbstractWe present a method for coupling current phase field models of alloy solidification into gen...
In this work general non-isothermal phase field models for multi-phase and multi-component systems a...
The first phase field approaches to solidification of materials were limited to alloys with just two...
In this paper we derive an approach for the effective utilization of thermodynamic data in phase-fie...
Mechanical properties of castings and the quality of workpieces can be traced back to the structure ...
We present a method for coupling current phase field models of alloy solidification into general con...
In this thesis we study the solidification process of systems with intrinsicanisotropy. We aim at fi...
Phase-field modeling has spread to a variety of applications involving phase transformations. ...
We give an overview of contributions made to the computational phase-field modelling of alloy solidi...
The microstructure resulting from the solidification of alloys can greatly affect their properties, ...
This paper provides a fundamental overview of the phase field theory addressing some of the basic co...
This paper demonstrates that the standard approach to the modelling of multi-phase field dynamics fo...
The utilization of thermodynamic and mobility data plays a major role in quantitative phase-field mo...
The ability to model phase transitions in complex (i.e. multi-component and multi- phase) alloys, ac...
We derive a phase field model which approximates a sharp interface model for solidification of a mul...
AbstractWe present a method for coupling current phase field models of alloy solidification into gen...
In this work general non-isothermal phase field models for multi-phase and multi-component systems a...
The first phase field approaches to solidification of materials were limited to alloys with just two...
In this paper we derive an approach for the effective utilization of thermodynamic data in phase-fie...
Mechanical properties of castings and the quality of workpieces can be traced back to the structure ...
We present a method for coupling current phase field models of alloy solidification into general con...
In this thesis we study the solidification process of systems with intrinsicanisotropy. We aim at fi...