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Discontinuous Buckling of Wide Beams and Metabeams

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2015

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American Physical Society (APS)
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Coulais, Corentin, Johannes T. B. Overvelde, Luuk A. Lubbers, Katia Bertoldi, and Martin van Hecke. 2015. “Discontinuous Buckling of Wide Beams and Metabeams.” Physical Review Letters 115 (4) (July 21). doi:10.1103/physrevlett.115.044301.

Abstract

We uncover how nonlinearities dramatically alter the buckling of elastic beams. First, we show experimentally that sufficiently wide ordinary elastic beams and specifically designed metabeams ---beams made from a mechanical metamaterial--- exhibit discontinuous buckling, an unstable form of buckling where the post-buckling stiffness is negative. Then we use simulations to uncover the crucial role of nonlinearities, and show that beams made from increasingly nonlinear materials exhibit increasingly negative post-buckling slope. Finally, we demonstrate that for sufficiently strong nonlinearity, we can observe discontinuous buckling for metabeams as slender as 1% numerically and 5% experimentally.

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