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AbstractAbstract
[en] The effects of fluid flow on the solidification morphology of pure materials and solute microsegregation patterns of binary alloys are studied using a computational methodology based on a front tracking/finite difference method. A general single field formulation is presented for the full coupling of phase change, fluid flow, heat and solute transport. This formulation accounts for interfacial rejection/absorption of latent heat and solute, interfacial anisotropies, discontinuities in material properties between the liquid and solid phases, shrinkage/expansion upon solidification and motion and deformation of the solid. Numerical results are presented for the two dimensional dendritic solidification of pure succinonitrile and the solidification of globulitic grains of a plutonium-gallium alloy. For both problems, comparisons are made between solidification without fluid flow and solidification within a shear flow
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Dec 1997; 11 p; 8. international conference on modeling of casting, welding and advanced solidification processes; San Diego, CA (United States); 7-12 Jun 1998; CONF-980635--; CONTRACT W-7405-ENG-36; ALSO AVAILABLE FROM OSTI AS DE98001611; NTIS; INIS; US GOVT. PRINTING OFFICE DEP
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