In this article we formulate a numerical method for the simulation of dealloying of a binary alloy by the selective removal of one component via electrochemical dissolution such that there is phase separation of the other component at the solid/electrolyte interface. The evolution of the interface is modelled by a forced mean curvature flow strongly coupled to the solution of a Cahn-Hilliard equation modelling surface phase separation. The method is based on a triangulated hypersurface whose evolution is calculated as well as the solution of the Cahn-Hilliard equation by the evolving surface finite element method (ESFEM). The numerical experiments simulate complex morphology and concentration patterns providing evidence that the mathematica...
A mathematical model is proposed for the dissolution of stoichiometric particles in binary alloys oc...
Many natural and engineering phenomena including cancer cell growth, solidification, and crack propa...
In recent years, liquid metal dealloying (LMD) has emerged as a promising material processing method...
Dealloying is the selective dissolution in a liquid environment of one or more component sfrom a mul...
International audienceThis manuscript presents a benchmark problem for the simulation of single-phas...
The dealloying of β-brass in 0.5 M aqueous NaCl was studied by electrochemical techniques at differe...
Modelling of a mineral dissolution front propagation is of interest in a wide range of scientific an...
The work deals in particular with dissolution and growth of particles in solid-state alloys. Several...
An elemental metal can dissolve at kink sites at low everpotentials producing no new interfacial rea...
In thermal processing of alloys, homogenization of the as-cast microstructure by annealing at such a...
International audienceThis talk presents a benchmark problem for the simulation of single-phase flow...
The solidification of pure materials has been simulated using a combined Eulerian-Lagrangian numeric...
In this article, an investigation of the interaction between gas porosity and a planar solidniquid (...
A large variety of applications in environmental, petroleum and chemical engineering involve multiph...
A new numerical method using front tracking finite elements is developed to solve the multidimension...
A mathematical model is proposed for the dissolution of stoichiometric particles in binary alloys oc...
Many natural and engineering phenomena including cancer cell growth, solidification, and crack propa...
In recent years, liquid metal dealloying (LMD) has emerged as a promising material processing method...
Dealloying is the selective dissolution in a liquid environment of one or more component sfrom a mul...
International audienceThis manuscript presents a benchmark problem for the simulation of single-phas...
The dealloying of β-brass in 0.5 M aqueous NaCl was studied by electrochemical techniques at differe...
Modelling of a mineral dissolution front propagation is of interest in a wide range of scientific an...
The work deals in particular with dissolution and growth of particles in solid-state alloys. Several...
An elemental metal can dissolve at kink sites at low everpotentials producing no new interfacial rea...
In thermal processing of alloys, homogenization of the as-cast microstructure by annealing at such a...
International audienceThis talk presents a benchmark problem for the simulation of single-phase flow...
The solidification of pure materials has been simulated using a combined Eulerian-Lagrangian numeric...
In this article, an investigation of the interaction between gas porosity and a planar solidniquid (...
A large variety of applications in environmental, petroleum and chemical engineering involve multiph...
A new numerical method using front tracking finite elements is developed to solve the multidimension...
A mathematical model is proposed for the dissolution of stoichiometric particles in binary alloys oc...
Many natural and engineering phenomena including cancer cell growth, solidification, and crack propa...
In recent years, liquid metal dealloying (LMD) has emerged as a promising material processing method...