International audienceThe growth competition between columnar dendritic grains is investigated by both phase-field (PF) and cellular automaton (CA) models in a growth regime where the primary dendrite spacing is much larger than the solutal diffusion length. This growth regime favors the formation of highly branched hierarchical dendritic microstructures prevalent in castings. Previous PF and CA studies have shed light on the complex relationship between GB orientation selection and GB bi-crystallography. They showed that, in the CA model, the orientation is governed by the favorably oriented grain (FOG) criterion and the geometrical limit (GL) in the limit of large and small cell size, respectively. The present study focuses on exploring h...
In this work, a cellular automaton (CA)-finite element (FE) model and a phase-field (PF)-FE model we...
We perform the phase-field modeling to investigate the growth pattern selections of the complex dend...
We perform the phase-field modeling to investigate the growth pattern selections of the complex dend...
The normal vector of migration direction in the solid-liquid interface of dendrites was used to desc...
This paper presents a very fast numerical approach to simulate microstructures resulting from melt p...
We investigate and assess the capability of the mesoscopic envelope model of dendritic solidificatio...
Large-scale phase-field studies of three-dimensional (3D) dendrite competitive growth at the converg...
We investigate and assess the capability of the mesoscopic envelope model of dendritic solidificatio...
A Cellular Automaton (CA) model to track the solid-liquid interface movement combined with finite vo...
International audienceTwo- and three-dimensional (3D) Cellular Automaton (CA) algorithms are propose...
International audienceTwo- and three-dimensional (3D) Cellular Automaton (CA) algorithms are propose...
International audienceWe have carried out three-dimensional phase-field simulations to model unique ...
International audienceWe have carried out three-dimensional phase-field simulations to model unique ...
We perform the phase-field modeling to investigate the growth pattern selections of the complex dend...
A comprehensive probabilistic model for simulating dendrite morphology and investigating dendritic g...
In this work, a cellular automaton (CA)-finite element (FE) model and a phase-field (PF)-FE model we...
We perform the phase-field modeling to investigate the growth pattern selections of the complex dend...
We perform the phase-field modeling to investigate the growth pattern selections of the complex dend...
The normal vector of migration direction in the solid-liquid interface of dendrites was used to desc...
This paper presents a very fast numerical approach to simulate microstructures resulting from melt p...
We investigate and assess the capability of the mesoscopic envelope model of dendritic solidificatio...
Large-scale phase-field studies of three-dimensional (3D) dendrite competitive growth at the converg...
We investigate and assess the capability of the mesoscopic envelope model of dendritic solidificatio...
A Cellular Automaton (CA) model to track the solid-liquid interface movement combined with finite vo...
International audienceTwo- and three-dimensional (3D) Cellular Automaton (CA) algorithms are propose...
International audienceTwo- and three-dimensional (3D) Cellular Automaton (CA) algorithms are propose...
International audienceWe have carried out three-dimensional phase-field simulations to model unique ...
International audienceWe have carried out three-dimensional phase-field simulations to model unique ...
We perform the phase-field modeling to investigate the growth pattern selections of the complex dend...
A comprehensive probabilistic model for simulating dendrite morphology and investigating dendritic g...
In this work, a cellular automaton (CA)-finite element (FE) model and a phase-field (PF)-FE model we...
We perform the phase-field modeling to investigate the growth pattern selections of the complex dend...
We perform the phase-field modeling to investigate the growth pattern selections of the complex dend...