Jamming and Stress Propagation in Granular Materials
arXiv:cond-mat/9901009 · doi:10.1063/1.166456
Abstract
We have recently developed some simple continuum models of static granular media which display "fragile" behaviour: they predict that the medium is unable to support certain types of infinitesimal load (which we call "incompatible" loads) without plastic rearrangement. We argue that a fragile description may be appropriate when the mechanical integrity of the medium arises adaptively, in response to a load, through an internal jamming process. We hypothesize that a network of force chains (or "granular skeleton") evolves until it can just support the applied load, at which point it comes to rest; it then remains intact so long as no incompatible load is applied. Our fragile models exhibits unusual mechanical responses involving hyperbolic equations for stress propagation along fixed characteristics through the material. These characteristics represent force chains; their arrangement expressly depends on the construction history. Thus, for example, we predict a large difference in the stress pattern beneath two conical piles of sand, one poured from a point source and one created by sieving.
40 pages, 9 figures, LATEX
References in corpus (4)
Cited by in corpus (22)
- Continuum limit of amorphous elastic bodies: A finite-size study of low frequency harmonic vibrations
- Network Analysis of Particles and Grains
- Force Chains, Microelasticity and Macroelasticity
- Vibrations of amorphous, nanometric structures: When does continuum theory apply?
- Continuum limit of amorphous elastic bodies (II): Response to a point source
- Stresses in isostatic granular systems and emergence of force chains
- Critical slowing down and hyperuniformity on approach to jamming
- Large Force Fluctuations in a Flowing Granular Medium
- Experimental study of forces between quasi-two-dimensional emulsion droplets near jamming
- Small and Large Scale Granular Statics
- Granular contact force density of states and entropy in a modified Edwards ensemble
- Effects of Friction and Disorder on the Quasi-Static Response of Granular Solids to a Localized Force
- Static Structural Signatures of Nearly Jammed Disordered and Ordered Hard-Sphere Packings: Direct Correlation Function
- Depletion attraction favors the elastic response of emulsions flowing in a constriction
- Failure of confined granular media due to pullout of an intruder: From force networks to a system wide response
- Unsteady flow, clusters and bands in a model shear-thickening fluid
- Random-Graph Models and Characterization of Granular Networks
- The Influence of the Degree of Heterogeneity on the Elastic Properties of Random Sphere Packings
- A Random-Line-Graph Approach to Overlapping Line Segments
- Signal Transmissibility in Marginal Granular Materials
- Betweenness Centrality as Predictor for Forces in Granular Packings
- Mechanism of acoustic emissions from booming sand dunes