TY - JOUR
T1 - A new growth kinetics in simulation of dendrite growth by cellular automaton method
AU - Shan, Bowei
AU - Lin, Xin
AU - Wei, Lei
AU - Huang, Weidong
PY - 2007
Y1 - 2007
N2 - A modified cellular automaton model was proposed to simulate the dendrite growth of alloy. Different from previous models, this model used neither an analytical equation(such as KGT model) nor an interface solute gradient equation to solve the velocity of solid-liquid interface, but used the interface solute and energy conservation and thermodynamic equilibrium condition to describe the solid/liquid interface growth kinetics process. In present model, once the temperature field and solute field were solved by finite different method in the entire domain, the material thermodynamic properties can be substituted into four algebraic equations to easily determine the variation of solid fraction, interface temperature and solute concentration, instead of calculating interface moving velocity. As a result, the complexity of the calculation can be largely reduced. The simulated dendrite growth was in a good agreement with the Lipton-Glicksman-Kurz (LGK) model for free dendritic growth in undercooled melts.
AB - A modified cellular automaton model was proposed to simulate the dendrite growth of alloy. Different from previous models, this model used neither an analytical equation(such as KGT model) nor an interface solute gradient equation to solve the velocity of solid-liquid interface, but used the interface solute and energy conservation and thermodynamic equilibrium condition to describe the solid/liquid interface growth kinetics process. In present model, once the temperature field and solute field were solved by finite different method in the entire domain, the material thermodynamic properties can be substituted into four algebraic equations to easily determine the variation of solid fraction, interface temperature and solute concentration, instead of calculating interface moving velocity. As a result, the complexity of the calculation can be largely reduced. The simulated dendrite growth was in a good agreement with the Lipton-Glicksman-Kurz (LGK) model for free dendritic growth in undercooled melts.
KW - Cellular automaton
KW - Dendrite
KW - Growth kinetics
UR - http://www.scopus.com/inward/record.url?scp=57649093226&partnerID=8YFLogxK
U2 - 10.4028/0-87849-463-4.957
DO - 10.4028/0-87849-463-4.957
M3 - 会议文章
AN - SCOPUS:57649093226
SN - 1022-6680
VL - 24-25
SP - 957
EP - 962
JO - Advanced Materials Research
JF - Advanced Materials Research
T2 - PRICM 6: The 6th Pacific Rim International Conference on Advanced Materials and Processing
Y2 - 5 November 2007 through 9 November 2007
ER -