| Issue |
EPJ Web Conf.
Volume 340, 2025
Powders & Grains 2025 – 10th International Conference on Micromechanics on Granular Media
|
|
|---|---|---|
| Article Number | 02007 | |
| Number of page(s) | 4 | |
| Section | Rheology and Constitutive Modelling | |
| DOI | https://doi.org/10.1051/epjconf/202534002007 | |
| Published online | 01 December 2025 | |
https://doi.org/10.1051/epjconf/202534002007
Microstructural anisotropy as the origin of dilatancy
Department of Chemical Engineering, Indian Institute of Science, Bangalore 560012, India
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Published online: 1 December 2025
Abstract
Dilation in sheared granular materials has been widely observed, yet its micromechanical origins remain debated. Using discrete element method (DEM) simulations of slow granular flows, we find that grain rearrangements occur intermittently, alternating between jammed phases, where the contact network remains stable, and yielding phases, characterized by rapid plastic rearrangements. Our analysis reveals that, under constant confining stress, granular materials dilate during jammed phases and compact during yielding phases. We show that as the material is sheared, the contact network develops anisotropic features. By incorporating these microstructural details into a macroscopic linear elastic framework, we derive a constitutive equation that explains the volumetric expansion in sheared granular materials. These findings highlight the essential role of elastic grain deformation and microstructural anisotropy in stress transmission and dilation, providing new insights into the mechanics of static and quasi-static granular materials.
© The Authors, published by EDP Sciences, 2025
This is an Open Access article distributed under the terms of the Creative Commons Attribution License 4.0, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
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