Modeling of Macrosegregation and Solidification Grain Structures with a Coupled Cellular Automaton-Finite Element Model
スポンサーリンク
概要
- 論文の詳細を見る
A 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 grain structure is not accounted for. Several applications of the model are then presented to quantify the effects of the grain structure on the final macrosegregation map. In particular, the effect of the undercooling of the columnar front, the presence of equiaxed grains nucleated in the undercooled liquid, as well as the transport and sedimentation of equiaxed grains are investigated. Although good validation is reached when comparing computed and measured segregation profiles available in the literature for the chosen configuration, it is concluded that refined experimental data are required to further validate the predictions of a coupled CAFE model.
- 社団法人 日本鉄鋼協会の論文
- 2006-06-15
著者
-
Guillemot Gildas
Cemef Umr Cnrs 7635 Ecole Des Mines
-
COMBEAU Herve
LSG2M, Ecole des Mines de Nancy
-
GANDIN Charles-Andre
CEMEF UMR CNRS 7635, Ecole des Mines
-
Combeau Herve
Lsg2m Umr Cnrs 7584 Ecole Des Mines
-
Combeau Herve
Lsg2m Ecole Des Mines De Nancy
-
Gandin Charles-andre
Cemef Umr Cnrs 7635 Ecole Des Mines
関連論文
- Experimental Study of Free Growth of Equiaxed NH_4Cl Crystals Settling in Undercooled NH_4Cl-H_2O Melts
- Modeling of Macrosegregation and Solidification Grain Structures with a Coupled Cellular Automaton-Finite Element Model