Geometry Driven Pathways in Hierarchical Mechanical Metamaterials
ORAL
Abstract
Using exactingly positioned vacancies in flexible tessellations of squares, we create novel hierarchical mechanical metamaterials that can exhibit multiple shape changes under mechanical actuation. By designing bending, buckling and self-contact interactions, we unravel the link between geometry and dynamical pathways and engineer 2D transformers, which explore complex sequences of symmetrical shapes.
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