English

Jamming of Bidisperse Frictional Spheres

Soft Condensed Matter 2021-08-18 v2

Abstract

By generalizing a geometric argument for frictionless spheres, a model is proposed for the jamming density ϕJ\phi_J of mechanically stable packings of bidisperse, frictional spheres. The monodisperse, μs\mu_s-dependent jamming density ϕJmono(μs)\phi_J^{\mathrm{mono}}(\mu_s) is the only input required in the model, where μs\mu_s is the coefficient of friction. The predictions of the model are validated by robust estimates of ϕJ\phi_J obtained from computer simulations of up to 10710^7 particles for a wide range of μs\mu_s, and size ratios up to 40:1. Although ϕJ\phi_J varies nonmonotonically with the volume fraction of small spheres fsf^s for all μs\mu_s, its maximum value ϕJ,max\phi_{J,\mathrm{max}} at an optimal fmaxsf^{s}_{\mathrm{max}} are both μs\mu_s-dependent. The optimal fmaxsf^{s}_{\mathrm{max}} is characterized by a sharp transition in the fraction of small rattler particles.

Keywords

Cite

@article{arxiv.2105.00977,
  title  = {Jamming of Bidisperse Frictional Spheres},
  author = {Ishan Srivastava and Scott A. Roberts and Joel T. Clemmer and Leonardo E. Silbert and Jeremy B. Lechman and Gary S. Grest},
  journal= {arXiv preprint arXiv:2105.00977},
  year   = {2021}
}

Comments

Accepted version; 5 pages, 4 figures