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- W3175701331 abstract "For various engineering and industrial applications it is desirable to realize mechanical systems with broadly adjustable elasticity to respond flexibly to the external environment. Here we discover a topology-correlated transition between affine and non-affine regimes in elasticity in both two- and three-dimensional packing-derived networks. Based on this transition, we numerically design and experimentally realize multifunctional systems with adjustable elasticity. Within one system, we achieve solid-like affine response, liquid-like non-affine response and a continuous tunability in between. Moreover, the system also exhibits a broadly tunable Poisson’s ratio from positive to negative values, which is of practical interest for energy absorption and for fracture-resistant materials. Our study reveals a fundamental connection between elasticity and network topology, and demonstrates its practical potential for designing mechanical systems and metamaterials. A non-affine to affine transition in elasticity occurs with the change of system topology in a packing-derived network, which enables the tuning of elastic moduli and Poisson’s ratio." @default.
- W3175701331 created "2021-07-05" @default.
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- W3175701331 date "2021-07-01" @default.
- W3175701331 modified "2023-10-16" @default.
- W3175701331 title "Achieving adjustable elasticity with non-affine to affine transition" @default.
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- W3175701331 doi "https://doi.org/10.1038/s41563-021-01046-8" @default.
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