We report on experimentally observed shear stress fluctuations in both granular solid and fluid states, showing that they are non-Gaussian at low shear rates, reflecting the predominance of correlated structures (force chains) in the solidlike phase, which also exhibit finite rigidity to shear. Peaks in the rigidity and the stress distribution’s skewness indicate that a change to the force-bearing mechanism occurs at the transition to fluid behavior, which, it is shown, can be predicted from the behavior of the stress at lower shear rates. In the fluid state stress is Gaussian distributed, suggesting that the central limit theorem holds. The fiber bundle model with random load sharing effectively reproduces the stress distribution at the yield point and also exhibits the exponential stress distribution anticipated from extant work on stress propagation in granular materials.

Shear Stress Fluctuations in the Liquid-Solid Granular Transition / F., Dalton; F., Farrelly; A., Petri; Pietronero, Luciano; L., Pitolli; G., Pontuale. - In: PHYSICAL REVIEW LETTERS. - ISSN 0031-9007. - STAMPA. - 95(13):(2005), pp. 138001-138001. [10.1103/PhysRevLett.95.138001]

Shear Stress Fluctuations in the Liquid-Solid Granular Transition

PIETRONERO, Luciano;
2005

Abstract

We report on experimentally observed shear stress fluctuations in both granular solid and fluid states, showing that they are non-Gaussian at low shear rates, reflecting the predominance of correlated structures (force chains) in the solidlike phase, which also exhibit finite rigidity to shear. Peaks in the rigidity and the stress distribution’s skewness indicate that a change to the force-bearing mechanism occurs at the transition to fluid behavior, which, it is shown, can be predicted from the behavior of the stress at lower shear rates. In the fluid state stress is Gaussian distributed, suggesting that the central limit theorem holds. The fiber bundle model with random load sharing effectively reproduces the stress distribution at the yield point and also exhibits the exponential stress distribution anticipated from extant work on stress propagation in granular materials.
2005
FORCE FLUCTUATIONS; STICK-SLIP
01 Pubblicazione su rivista::01a Articolo in rivista
Shear Stress Fluctuations in the Liquid-Solid Granular Transition / F., Dalton; F., Farrelly; A., Petri; Pietronero, Luciano; L., Pitolli; G., Pontuale. - In: PHYSICAL REVIEW LETTERS. - ISSN 0031-9007. - STAMPA. - 95(13):(2005), pp. 138001-138001. [10.1103/PhysRevLett.95.138001]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1744
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