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 of mechanically stable packings of bidisperse, frictional spheres. The monodisperse, -dependent jamming density is the only input required in the model, where is the coefficient of friction. The predictions of the model are validated by robust estimates of obtained from computer simulations of up to particles for a wide range of , and size ratios up to 40:1. Although varies nonmonotonically with the volume fraction of small spheres for all , its maximum value at an optimal are both -dependent. The optimal is characterized by a sharp transition in the fraction of small rattler particles.
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