arXiv · 1603.02247
Dynamic shear jamming in dense granular suspensions under extension
Abstract
Unlike dry granular materials, a dense granular suspension like cornstarch in water can strongly resist extensional flows. At low extension rates, such a suspension behaves like a viscous liquid, but rapid extension results in a response where stresses far exceed the predictions of lubrication hydrodynamics and capillarity. To understand this remarkable mechanical response, we experimentally measure the normal force imparted by a large bulk of the suspension on a plate moving vertically upward at a controlled velocity. We observe that above a velocity threshold, the peak force increases by orders of magnitude. Using fast ultrasound imaging we map out the local velocity profiles inside the suspension which reveal the formation of a growing jammed region under rapid extension. This region interacts with the rigid boundaries of the container through strong velocity gradients, suggesting a direct connection to the recently proposed shear-jamming mechanism.
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Sayantan Majumdar, Ivo R. Peters, Endao Han, Heinrich M. Jaeger. 2016-03-07. Dynamic shear jamming in dense granular suspensions under extension. https://doi.org/10.1103/physreve.95.012603
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