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Article Dans Une Revue International Journal for Numerical and Analytical Methods in Geomechanics Année : 2011

A two mechanisms elastoplastic model for shakedown of unbound granular materials and DEM simulations

Résumé

An elastoplastic model has been developed for the finite elements modelling of repeated load triaxial tests. This model is based on the shakedown theory established by Zarka for metallic structures. To the previous works, which were based on the Drucker-Prager yield surface and the plastic potential of Von Mises, a compression cap has been added to each one. The model straightforwardly determines the purely elastic state or the elastic shakedown state or the plastic shakedown state and calculates the deviatoric and the volumetric plastic strains. The calibration of the elastoplastic model has been carried out with DEM simulations and an unbound granular material for roads under repeated load triaxial tests using finite element method. The calculations underline the capabilities of the model to take into account, with a unique formalism, the accumulation of the deviatoric and volumetric plastic strains along the loading cycles.

Dates et versions

hal-00697582 , version 1 (15-05-2012)

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Citer

Cyrille Chazallon, Georg Koval, Saida Mouhoubi. A two mechanisms elastoplastic model for shakedown of unbound granular materials and DEM simulations. International Journal for Numerical and Analytical Methods in Geomechanics, 2011, ⟨10.1002/nag.1070⟩. ⟨hal-00697582⟩
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