We propose a phase-field model to describe reaction front propagation in activated transitions obeying Arrhenius kinetics. The model is applicable, for example, to the explosive crystallization of amorphous films. Two coupled fields interact during the reaction, a temperature field T(x,t) and a field C(x,t) describing the amorphous/crystal transition, which are continuous functions of space x and time t. Unlike previous work, our model incorporates a nonzero front width _ in a natural way, corresponding to that region in space where T and C undergo rapid variation. In the limit of __0, our model reduces to the sharp interface approach of others. Treating the background temperature of the reacting sample as a control parameter, periodic solu...
In this paper we present a phase-field model to describe isothermal phase transitions between ideal ...
Solute trapping is an important phenomenon in rapid solidification of alloys, for which the continuo...
We introduce a model of two coupled reaction--diffusion equations to describe the dynamics and propa...
We study the dynamics of two reaction-diffusion phenomena driven by chemical activation and thermal ...
Copyright © 2006 Elsevier. NOTICE: This is the author’s version of a work accepted for publication b...
International audienceExplosive crystallization is a well known phenomenon occurring due to the ther...
We propose a phase-field model for the kinetics of isothermal crystallization of an amorphous solid ...
We present a phase field model which approximates a one-phase Stefan-like problem with a kinetic con...
Phase-field models are powerful tools to tackle free-boundary problems. For phase transformations in...
We consider a phase-field model for a phase change process with phase-dependent heat absorption. Thi...
Abstract. The velocity of the interphase boundary motion caused by latent heat transfer at ferroelec...
We carry out phase field modeling as a continuum simulation technique in order to study rapid crysta...
Pattern interaction has so far been restricted to systems with relatively complex reaction schemes, ...
In recent years there has been great interest in studying systems where the reactants are initially ...
International audienceMixing fronts between two reactive species subjected to velocity fields is con...
In this paper we present a phase-field model to describe isothermal phase transitions between ideal ...
Solute trapping is an important phenomenon in rapid solidification of alloys, for which the continuo...
We introduce a model of two coupled reaction--diffusion equations to describe the dynamics and propa...
We study the dynamics of two reaction-diffusion phenomena driven by chemical activation and thermal ...
Copyright © 2006 Elsevier. NOTICE: This is the author’s version of a work accepted for publication b...
International audienceExplosive crystallization is a well known phenomenon occurring due to the ther...
We propose a phase-field model for the kinetics of isothermal crystallization of an amorphous solid ...
We present a phase field model which approximates a one-phase Stefan-like problem with a kinetic con...
Phase-field models are powerful tools to tackle free-boundary problems. For phase transformations in...
We consider a phase-field model for a phase change process with phase-dependent heat absorption. Thi...
Abstract. The velocity of the interphase boundary motion caused by latent heat transfer at ferroelec...
We carry out phase field modeling as a continuum simulation technique in order to study rapid crysta...
Pattern interaction has so far been restricted to systems with relatively complex reaction schemes, ...
In recent years there has been great interest in studying systems where the reactants are initially ...
International audienceMixing fronts between two reactive species subjected to velocity fields is con...
In this paper we present a phase-field model to describe isothermal phase transitions between ideal ...
Solute trapping is an important phenomenon in rapid solidification of alloys, for which the continuo...
We introduce a model of two coupled reaction--diffusion equations to describe the dynamics and propa...