Available on: http://www.jstage.jst.go.jp/article/isijinternational/46/6/46_880/_articleInternational audienceA coupled Cellular Automaton (CA)-Finite Element (FE) model is presented for the prediction of solidification grain structures coupled with the calculation of solid and liquid flow induced macrosegregation. The model is applied to simulate the solidification of a Pb-48wt%Sn alloy in a rectangular cavity cooled down from only one of its vertical boundaries. The algorithm and the numerical implementation of the coupling between the CA and FE methods are first validated by considering a single grain developing with no undercooling. Such a CAFE simulation is shown to retrieve the solution of a purely FE method simulation for which the g...
A cellular automaton (CA) model to predict the formation of grain macrostructure during solidificati...
A cellular automaton (CA) model to predict the formation of grain macrostructure during solidificati...
International audienceA three-dimensional (3-D) model for the prediction of dendritic grain structur...
International audienceExtension of a coupled Cellular Automaton (CA) - Finite Element (FE) model is ...
International audienceExtension of a coupled Cellular Automaton (CA) - Finite Element (FE) model is ...
Grain structure and macrosegregation are two main factors determining mechanical properties of compo...
International audienceA two-dimensional (2D) cellular automaton (CA)-finite element (FE) model devel...
International audienceCellular Automaton (CA) - Finite Element (FE) modeling is an efficient way to ...
International audienceCellular Automaton (CA) - Finite Element (FE) modeling is an efficient way to ...
International audienceA numerical implementation of a three-dimensional (3D) cellular automaton (CA)...
International audienceA new algorithm based upon a 2-dimensional Cellular Automaton (CA) technique i...
International audienceA new algorithm based upon a 2-dimensional Cellular Automaton (CA) technique i...
This article is based on a presentation made at the “Analysis and Modeling of Solidification” sympos...
The solidification of metallic alloys gives ri se to the formation of dendritic grains. ln order to ...
This article is based on a presentation made at the “Analysis and Modeling of Solidification” sympos...
A cellular automaton (CA) model to predict the formation of grain macrostructure during solidificati...
A cellular automaton (CA) model to predict the formation of grain macrostructure during solidificati...
International audienceA three-dimensional (3-D) model for the prediction of dendritic grain structur...
International audienceExtension of a coupled Cellular Automaton (CA) - Finite Element (FE) model is ...
International audienceExtension of a coupled Cellular Automaton (CA) - Finite Element (FE) model is ...
Grain structure and macrosegregation are two main factors determining mechanical properties of compo...
International audienceA two-dimensional (2D) cellular automaton (CA)-finite element (FE) model devel...
International audienceCellular Automaton (CA) - Finite Element (FE) modeling is an efficient way to ...
International audienceCellular Automaton (CA) - Finite Element (FE) modeling is an efficient way to ...
International audienceA numerical implementation of a three-dimensional (3D) cellular automaton (CA)...
International audienceA new algorithm based upon a 2-dimensional Cellular Automaton (CA) technique i...
International audienceA new algorithm based upon a 2-dimensional Cellular Automaton (CA) technique i...
This article is based on a presentation made at the “Analysis and Modeling of Solidification” sympos...
The solidification of metallic alloys gives ri se to the formation of dendritic grains. ln order to ...
This article is based on a presentation made at the “Analysis and Modeling of Solidification” sympos...
A cellular automaton (CA) model to predict the formation of grain macrostructure during solidificati...
A cellular automaton (CA) model to predict the formation of grain macrostructure during solidificati...
International audienceA three-dimensional (3-D) model for the prediction of dendritic grain structur...