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Article Dans Une Revue Advanced Powder Technology Année : 2017

Study of the shear behavior of binary granular materials by DEM simulations and experimental triaxial tests

K. Wu
  • Fonction : Auteur
N. Abriak
S. Liu
  • Fonction : Auteur

Résumé

This paper aims at studying the shear behavior of mixtures of fine and coarse particles by classical triaxial tests. The work is performed both on experimental tests and computer simulations by discrete element method. The comparisons between experimental and simulation results on monosized and binary samples show that the DEM model can reproduce deviatoric curves satisfactorily in experimental conditions. The shear behavior of monosized and binary systems with the same initial void ratio differs significantly, suggesting that the state of compaction of the system is more influential than the initial void ratio. Comparison between compacted and uncompacted samples confirms that compaction increases the shear strength of granular matter. At the particle scale, the coordination number decreases with the augmentation of the volume fraction of coarse particles. The average rotation velocity of fine particles is higher than coarse particles, but their particle stress tensor is smaller than coarse ones. © 2017 The Society of Powder Technology Japan
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Dates et versions

hal-03322368 , version 1 (19-08-2021)

Identifiants

Citer

K. Wu, S. Rémond, N. Abriak, P. Pizette, F. Becquart, et al.. Study of the shear behavior of binary granular materials by DEM simulations and experimental triaxial tests. Advanced Powder Technology, 2017, 28 (9), pp.2198-2210. ⟨10.1016/j.apt.2017.05.027⟩. ⟨hal-03322368⟩
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