In this work, we apply phase field simulations to examine the coarsening behavior of morphologically complex two-phase microstructures in which the phases have highly dissimilar mobilities, a condition approaching that found in experimental solid-liquid systems. Specifically, we consider a two-phase system at the critical composition ($50\%$ volume fraction) in which the mobilities of the two phases differ by a factor of 100. This system is simulated in two and three dimensions using the Cahn-Hilliard model with a concentration-dependent mobility, and results are compared to simulations with a constant mobility. A morphological transition occurs during coarsening of the two-dimensional system (corresponding to a thin film geometry) with dis...
Microstructure evolution in non-conserved and volume-conserved isotropic two-phase grain structures,...
The evolution of the microstructure due to spinodal decomposition in phase separated mixtures has as...
The evolution of the microstructure due to spinodal decomposition in phase separated mixtures has as...
Coarsening is a fundamental phenomenon that occurs in a wide range of engineering materials, from po...
Coarsening is a fundamental phenomenon that occurs in a wide range of engineering materials, from po...
The coarsening behavior of three-phase materials, such as eutectic alloys, is of high technological ...
The coarsening behavior of three-phase materials, such as eutectic alloys, is of high technological ...
The coarsening behavior of three-phase materials, such as eutectic material systems, is of high tech...
We report on a three-phase coarsening phenomenon in which an initially random dispersion of two phas...
We have studied precipitate growth and coarsening in ternary alloys using two different phase held m...
Microstructure engineering is an important aspect of design and development of new engineering mater...
International audienceThe evolution of the microstructure and coarsening kinetics of disordered γ pr...
International audienceThe evolution of the microstructure and coarsening kinetics of disordered γ pr...
International audienceThe evolution of the microstructure and coarsening kinetics of disordered γ pr...
According to Gibbs phase rule, ternary two phase alloys have a single degree of freedom at equilibri...
Microstructure evolution in non-conserved and volume-conserved isotropic two-phase grain structures,...
The evolution of the microstructure due to spinodal decomposition in phase separated mixtures has as...
The evolution of the microstructure due to spinodal decomposition in phase separated mixtures has as...
Coarsening is a fundamental phenomenon that occurs in a wide range of engineering materials, from po...
Coarsening is a fundamental phenomenon that occurs in a wide range of engineering materials, from po...
The coarsening behavior of three-phase materials, such as eutectic alloys, is of high technological ...
The coarsening behavior of three-phase materials, such as eutectic alloys, is of high technological ...
The coarsening behavior of three-phase materials, such as eutectic material systems, is of high tech...
We report on a three-phase coarsening phenomenon in which an initially random dispersion of two phas...
We have studied precipitate growth and coarsening in ternary alloys using two different phase held m...
Microstructure engineering is an important aspect of design and development of new engineering mater...
International audienceThe evolution of the microstructure and coarsening kinetics of disordered γ pr...
International audienceThe evolution of the microstructure and coarsening kinetics of disordered γ pr...
International audienceThe evolution of the microstructure and coarsening kinetics of disordered γ pr...
According to Gibbs phase rule, ternary two phase alloys have a single degree of freedom at equilibri...
Microstructure evolution in non-conserved and volume-conserved isotropic two-phase grain structures,...
The evolution of the microstructure due to spinodal decomposition in phase separated mixtures has as...
The evolution of the microstructure due to spinodal decomposition in phase separated mixtures has as...