Frontiers in Soft Matter (Jan 2024)

Protocol-dependent frictional granular jamming simulations: cyclical, compression, and expansion

  • A. P. Santos,
  • Ishan Srivastava,
  • Leonardo E. Silbert,
  • Jeremy B. Lechman,
  • Gary S. Grest

DOI
https://doi.org/10.3389/frsfm.2023.1326756
Journal volume & issue
Vol. 3

Abstract

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Granular matter takes many paths to pack in natural and industrial processes. The path influences the packing microstructure, particularly for frictional grains. We perform discrete element modeling simulations of different paths to construct packings of frictional spheres. Specifically, we explore four stress-controlled protocols implementing packing expansions and compressions in various combinations thereof. We characterize the eventual packed states through their dependence of the packing fraction and coordination number on packing pressure, identifying non-monotonicities with pressure that correlate with the fraction of frictional contacts. These stress-controlled, bulk-like particle simulations access very low-pressure packings, namely, the marginally stable limit, and demonstrate the strong protocol dependence of frictional granular matter.

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