Critical scaling near jamming transition for frictional granular particles
Michio Otsuki1, Hisao Hayakawa
1Department of Physics and Mathematics, Aoyama Gakuin University, Sagamihara, Kanagawa, Japan.
Abstract:
The critical rheology of sheared frictional granular materials near jamming transition is numerically investigated. It is confirmed that there exists a true critical density which characterizes the onset of the yield stress and two fictitious critical densities which characterize the scaling laws of rheological properties. We find the existence of a hysteresis loop between two of the critical densities for each friction coefficient. It is noteworthy that the critical scaling law for frictionless jamming transition seems to be still valid even for frictional jamming despite using fictitious critical density values.
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