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Programmable Mechanical Metamaterials

We create mechanical metamaterials whose response to uniaxial compression can be programmed by lateral confinement, allowing monotonic, non-monotonic and hysteretic behavior. These functionalities arise from a broken rotational symmetry which causes highly nonlinear coupling of deformations along the two primary axes of these metamaterials. We introduce a soft mechanism model which captures the programmable mechanics, and outline a general design strategy for confined mechanical metamaterials. Finally, we show how inhomogeneous confinement can be explored to create multi stability and giant hysteresis.

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Co-authorshipCo-authorshipCo-authorshipAuthorshipAuthorshipAuthorshipTopic signalWProgrammable Mechanical Metamat...preprint / 2014ABastiaan FlorijnResearcherACorentin CoulaisResearcherAMartin van HeckeResearcherTcond-mat.soft4333 works
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Programmable Mechanical Metamaterials

preprint / 2014

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