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Volume 57, Issue 5, Pages 1554-1569 (March 2009)


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A mesoscale granular model for the mechanical behavior of alloys during solidification

Stéphane VernèdeabCorresponding Author Informationemail address, Jonathan A. Dantzigac, Michel Rappaza

Received 9 October 2008; received in revised form 29 November 2008; accepted 1 December 2008. published online 31 December 2008.

Abstract 

We present a two-dimensional granular model for the mechanical behavior of an ensemble of globular grains during solidification. The grain structure is produced by a Voronoi tessellation based on an array of predefined nuclei. We consider the fluid flow caused by grain movement and solidification shrinkage in the network of channels that is formed by the faces of the grains in the tessellation. We develop the governing equations for the flow rate and pressure drop across each channel when the grains are allowed to move, and we then assemble the equations into a global expression that conserves mass and force in the system. We show that the formulation is consistent with dissipative formulations of non-equilibrium thermodynamics. Several example problems are presented to illustrate the effect of tensile strains and the availability of liquid to feed the deforming microstructure. For solid fractions below , we find that the fluid is able to feed the deformation at low strain, even if external feeding is not permitted. For solid fractions above , clusters of grains with “dry” boundaries form and fluid flow becomes highly localized.

a Computational Materials Laboratory, Ecole Polytechnique Fédérale de Lausanne, Station 12, Lausanne CH-1015, Switzerland

b Alcan Centre de Recherches de Voreppe, ZI Centr’Alp, 725 rue Aristide Bergès, BP 27, Voreppe FR-38341, France

c Department of Mechanical Science and Engineering, University of Illinois, 1206 West Green Street Urbana, IL 61801, USA

Corresponding Author InformationCorresponding author. Address: Alcan Centre de Recherches de Voreppe, ZI Centr’Alp, 725 rue Aristide Bergès, BP 27, Voreppe FR-38341, France.

PII: S1359-6454(08)00860-4

doi:10.1016/j.actamat.2008.12.006


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