Investigating the relation between elastic and relaxation properties of dry, frictional granular media during shear deformation

Fuente: arXiv
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Autores principales: Rigotti, Aurélien, Dansereau, Véronique, Weiss, Jérôme
Formato: Preprint
Publicado: 2025
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author Rigotti, Aurélien
Dansereau, Véronique
Weiss, Jérôme
author_facet Rigotti, Aurélien
Dansereau, Véronique
Weiss, Jérôme
contents Using discrete element simulations based on molecular dynamics, we investigate the mechanical behavior of sheared, dry, frictional granular media in the "dense" and "critical" regimes. We find that this behavior is partitioned between transient stages and a final stationary stage. While the later is macroscopically consistent with the predictions of the viscous, $μ(I)$ rheology, both the macroscopic behavior during the transient stages and the overall microscopic behavior suggest a more complex picture. Indeed, the simulated granular medium exhibits a finite elastic stiffness throughout its entire shear deformation history, although topological rearrangements of the grains at the microscale translate into a partial degradation of this stiffness, which can be interpreted as a form of elastic damage. The relaxation of stresses follows a compressed exponential, also highlighting the role of elastic interactions in the medium, with residual stresses that depend on the level of elastic damage. The established relations between elastic and relaxation properties point to a complex rheology, characterized by a damage-dependent transition between a visco-elasto-plastic and a viscous behavior.
format Preprint
id arxiv_https___arxiv_org_abs_2502_17021
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Investigating the relation between elastic and relaxation properties of dry, frictional granular media during shear deformation
Rigotti, Aurélien
Dansereau, Véronique
Weiss, Jérôme
Soft Condensed Matter
74
Using discrete element simulations based on molecular dynamics, we investigate the mechanical behavior of sheared, dry, frictional granular media in the "dense" and "critical" regimes. We find that this behavior is partitioned between transient stages and a final stationary stage. While the later is macroscopically consistent with the predictions of the viscous, $μ(I)$ rheology, both the macroscopic behavior during the transient stages and the overall microscopic behavior suggest a more complex picture. Indeed, the simulated granular medium exhibits a finite elastic stiffness throughout its entire shear deformation history, although topological rearrangements of the grains at the microscale translate into a partial degradation of this stiffness, which can be interpreted as a form of elastic damage. The relaxation of stresses follows a compressed exponential, also highlighting the role of elastic interactions in the medium, with residual stresses that depend on the level of elastic damage. The established relations between elastic and relaxation properties point to a complex rheology, characterized by a damage-dependent transition between a visco-elasto-plastic and a viscous behavior.
title Investigating the relation between elastic and relaxation properties of dry, frictional granular media during shear deformation
topic Soft Condensed Matter
74
url https://arxiv.org/abs/2502.17021