Liquid induced transitions in granular media

Physics – Condensed Matter – Disordered Systems and Neural Networks

Scientific paper

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11 pages, 3 figures included in the article, HTML+ GIF format, to appear in the Nov. PRE

Scientific paper

10.1103/PhysRevE.60.5823

We investigate the effect of interstitial liquid on the physical properties of granular media by measuring the angle of repose as a function of the liquid content. The resultant adhesive forces lead to three distinct regimes in the observed behavior as the liquid content is increased: a granular regime in which the grains move individually, a correlated regime in which the grains move in correlated clusters, and a plastic regime in which the grains flow coherently. We discuss these regimes in terms of two proposed theories describing the effects of liquid on the physical properties of granular media.

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