Tessellated granular packings preserve elastic anisotropy up to 100 times higher than crystalline solids by inheriting voxel properties while restricting grain rearrangements.
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A bar-and-spring mechanical hysteron enables tunable interactions of general sign, providing a physical design platform for arbitrary non-equilibrium mechanical behaviors.
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Preserving elastic anisotropy with tessellations of granular packings
Tessellated granular packings preserve elastic anisotropy up to 100 times higher than crystalline solids by inheriting voxel properties while restricting grain rearrangements.
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Mechanical hysterons with tunable interactions of general sign
A bar-and-spring mechanical hysteron enables tunable interactions of general sign, providing a physical design platform for arbitrary non-equilibrium mechanical behaviors.