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Numerical limit analysis bounds for ductile porous media with oblate voids
Authors:F Pastor  J Pastor
Institution:a Laboratoire de mécanique de Lille (LML), UMR 8107 CNRS, 59 655 Villeneuve d’Ascq, France
b Université de Savoie, POLYTECH’Annecy-Chambéry, Laboratoire LOCIE, 73 376 Le Bourget du Lac, France
c Institut D’Alembert, UMR 7190 CNRS, UMR 7190 CNRS, UPMC, 4, Place Jussieu, 75252 Paris Cedex, France
Abstract:The paper is devoted to a numerical limit analysis of a hollow spheroidal model with a von Mises solid matrix. To this purpose, existing kinematic and static 3D-FEM codes for the case of spherical cavities have been modified and improved to account for the model of a spheroidal cavity confocal with the external spheroidal boundary. The optimized conic programming formulations and the resulting codes appear to be very efficient. This framework is then applied to the derivation of numerical upper and lower anisotropic bounds in the case of an oblate void. The numerical results obtained from a series of tests are presented and allow to assess the accuracy of closed-form expressions of the macroscopic criteria proposed by Gologanu et al., 1994] and Gologanu et al., 1997] for porous media with oblate voids.
Keywords:Gurson-type models  Spheroidal voids  Micromechanics  Limit analysis  Upper and lower bounds  Conic programming
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