A cellular automaton (CA) model to predict the formation of grain macrostructure during solidification has been implemented and the coupling between the microscopic and the macroscopic submodels has been investigated. The microscopic submodel simulates the nucleation and growth of grains, whereas the macroscopic solves the heat conduction equation. The directional solidification of an Al-7 wt. (%) Si alloy was simulated, enabling the calculation of the temperature and solid fraction profiles. The calculated temperature was used to obtain the solid fraction profile by an application of Scheil equation. This solid fraction disagrees with that calculated in the micro-macro coupling of the model, although this coupling is completely based on Sc...
International audienceA cellular automaton (CA) method was developed in the 1990s for the prediction...
Modeling the semisolid structure formation is of significance in both understanding the mechanisms o...
A two-dimensional model for the simulation of solidification microstructure in multi-component alloy...
A cellular automaton (CA) model to predict the formation of grain macrostructure during solidificati...
International audienceA two-dimensional (2D) cellular automaton (CA)-finite element (FE) model devel...
International audienceExtension of a coupled Cellular Automaton (CA) - Finite Element (FE) model is ...
Computer modeling of semi-solid structure formation is of significance in both understanding the mec...
International audienceA new algorithm based upon a 2-dimensional Cellular Automaton (CA) technique i...
A model based on the cellular automaton (CA) technique for the simulation of solidification microstr...
Available on: http://www.jstage.jst.go.jp/article/isijinternational/46/6/46_880/_articleInternationa...
Grain structure and macrosegregation are two main factors determining mechanical properties of compo...
International audienceA three-dimensional (3-D) model for the prediction of dendritic grain structur...
This article is based on a presentation made at the “Analysis and Modeling of Solidification” sympos...
A cellular automation (CA) model has successfully been used to model the development of microstructu...
International audienceAt the intermediate mesoscopic scale of the grains, cellular automata (CA) met...
International audienceA cellular automaton (CA) method was developed in the 1990s for the prediction...
Modeling the semisolid structure formation is of significance in both understanding the mechanisms o...
A two-dimensional model for the simulation of solidification microstructure in multi-component alloy...
A cellular automaton (CA) model to predict the formation of grain macrostructure during solidificati...
International audienceA two-dimensional (2D) cellular automaton (CA)-finite element (FE) model devel...
International audienceExtension of a coupled Cellular Automaton (CA) - Finite Element (FE) model is ...
Computer modeling of semi-solid structure formation is of significance in both understanding the mec...
International audienceA new algorithm based upon a 2-dimensional Cellular Automaton (CA) technique i...
A model based on the cellular automaton (CA) technique for the simulation of solidification microstr...
Available on: http://www.jstage.jst.go.jp/article/isijinternational/46/6/46_880/_articleInternationa...
Grain structure and macrosegregation are two main factors determining mechanical properties of compo...
International audienceA three-dimensional (3-D) model for the prediction of dendritic grain structur...
This article is based on a presentation made at the “Analysis and Modeling of Solidification” sympos...
A cellular automation (CA) model has successfully been used to model the development of microstructu...
International audienceAt the intermediate mesoscopic scale of the grains, cellular automata (CA) met...
International audienceA cellular automaton (CA) method was developed in the 1990s for the prediction...
Modeling the semisolid structure formation is of significance in both understanding the mechanisms o...
A two-dimensional model for the simulation of solidification microstructure in multi-component alloy...