Physical Review Letters · 2018 · 16 citations · 46 references
When elastic solids are sheared, a nonlinear effect named after Poynting gives rise to normal stresses or changes in volume. We provide a novel relation between the Poynting effect and the microscopic Grüneisen parameter, which quantifies how stretching shifts vibrational modes. By applying this relation to random spring networks, a minimal model for, e.g., biopolymer gels and solid foams, we find that networks contract or develop tension because they vibrate faster when stretched. The amplitude of the Poynting effect is sensitive to the network's linear elastic moduli, which can be tuned via its preparation protocol and connectivity. Finally, we show that the Poynting effect can be used to predict the finite strain scale where the material stiffens under shear.
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The Proceedings of the National Academy of Sciences
Edwin Bidwell Wilson · Science · 1919 · 1.8K citations
Structural Relaxation Made Simple
Erik Bitzek, Pekka Koskinen, Franz Gähler et al. · Physical Review Letters · 2006 · 1.7K citations
Jamming at zero temperature and zero applied stress: The epitome of disorder
Corey S. O’Hern, Leonardo E. Silbert, Andrea J. Liu et al. · Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics · 2003 · 1.6K citations · Full text
Engineering, Jamming Threshold, Mathematical Statistical Physic +16