We report on a cellular pattern which spontaneously forms at the surface of a thin layer of a cohesive granular material submitted to in-plane stretching. We present a simple model in which the mechanism responsible of the instability is the "strain softening" exhibited by humid granular materials above a typical strain. Our analysis indicates that such a type of instability should be observed in any system presenting a negative stress sensitivity to strain perturbations.
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Univ Grenoble Alpes, Irstea, UR ETGR, 2 Rue Papeterie,BP 76, F-38402 St Martin Dheres, FranceAgroParisTech ENGREF, 19 Ave Maine, F-75732 Paris, France
Wautier, Antoine
Bonelli, Stephane
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Irstea UR RECOVER, 3275 Rte Cezanne,CS 40061, F-13182 Aix En Provence 5, FranceAgroParisTech ENGREF, 19 Ave Maine, F-75732 Paris, France
Bonelli, Stephane
Nicot, Francois
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Univ Grenoble Alpes, Irstea, UR ETGR, 2 Rue Papeterie,BP 76, F-38402 St Martin Dheres, FranceAgroParisTech ENGREF, 19 Ave Maine, F-75732 Paris, France