Abstract
We describe here the rheological response of dense, slowly deforming granular materials to shear in a cylindrical Couette cell. All components of the stress on the outer cylinder are measured pointwise as a function of the depth, for different methods of construction of the bed that presumably lead to distinct fabrics. The static stress profiles for the different construction protocols are different, but a stress profile that is independent of construction history emerges when the granular column is sheared for sufficient time, in accord with the predictions of plasticity theories. However the qualitative features of the the stress profile under shear differs radically from the predictions of plasticity theories and data reported in earlier studies. We discuss a hypothesis for the anomalous stress profiles that was proposed recently by us, and the ways in which further experiments may to conducted to verify it. © 2013 AIP Publishing LLC.
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Kumar, V. S., Murthy, T., & Nott, P. R. (2013). Rheometry of dense granular materials: The crucial effects of gravity and confining walls. In AIP Conference Proceedings (Vol. 1542, pp. 49–51). https://doi.org/10.1063/1.4811866
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