Mechanical and microscopic properties of the reversible plastic regime in a 2D jammed material
Soft Condensed Matter
2014-01-22 v2
Abstract
At the microscopic level, plastic flow of a jammed, disordered material consists of a series of particle rearrangements that cannot be reversed by subsequent deformation. An infinitesimal deformation of the same material has no rearrangements. Yet between these limits, there may be a self-organized plastic regime with rearrangements, but with no net change upon reversing a deformation. We measure the oscillatory response of a jammed interfacial material, and directly observe rearrangements that couple to bulk stress and dissipate energy, but do not always give rise to global irreversibility.
Keywords
Cite
@article{arxiv.1308.6806,
title = {Mechanical and microscopic properties of the reversible plastic regime in a 2D jammed material},
author = {Nathan C. Keim and Paulo E. Arratia},
journal= {arXiv preprint arXiv:1308.6806},
year = {2014}
}
Comments
5 pages, 4 figures. A supplemental PDF detailing methods, and movies corresponding to Fig. 2(a, b, f), are available