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Effects of inter-particle friction on the critical state behaviour of granular materials: a numerical study

Abstract

The Conference program's website is located at http://congress.cimne.com/particles2013/frontal/ProgTodo.aspTechnical Session: IS - Instability Mechanisms: From Particles to Structures II (Invited Session)ECCOMAS Thematic Conference SeriesCritical state soil mechanics (CSSM) gives a theoretical framework for soil modelling. This paper investigates the effect of inter-particle friction on the critical state behavior of DEM assemblies with grading representative of a real soil. It is found that the angle of shearing resistance at the critical state increases with increasing inter-particle friction () and in void ratio (e) vs logarithmic mean effective stress (log(p’)) space the critical state locii have higher e values when is higher. An atypical CSL in e-logp’ space that deviates from experimental observations and the classical CSSM behavior was observed when µ = 0.5. Micro-scale analyses show that this can be attributed to the emergence of a higher number of floating particles due to the increasing self-stability of strong force chains with increasing inter-particle friction. This study recommends the use of inter-particle friction lower than 0.5 in DEM simulations of element testing in soil mechanics.published_or_final_versio

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