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Tessellated granular metamaterials with tunable elastic moduli

Authors :
Pashine, Nidhi
Wang, Dong
Zhang, Jerry
Patiballa, Sree Kalyan
Witthaus, Sven
Shattuck, Mark D.
O'Hern, Corey S.
Kramer-Bottiglio, Rebecca
Publication Year :
2023
Publisher :
arXiv, 2023.

Abstract

Most granular packings possess shear moduli ($G$) that increase with the applied external pressure, and bulk moduli ($B$) that increase or remain constant with pressure. This paper presents "tessellated" granular metamaterials for which both $G$ and the ratio $G/B$ decrease with increasing pressure. The granular metamaterials are made from flexible tessellations forming a ring of closed cells, each containing a small number of solid particles. For under-constrained tessellations, the dominant contributions to $G$ and $B$ are the particle-particle and particle-cell interactions. With specific particle configurations in the cells, we limit the number of possible particle rearrangements to achieve decreasing $G$ as we increase the pressure difference between the inside and outside of the tessellation, leading to $G/B \ll 1$ at large pressures. We further study tessellated granular metamaterials with cells containing a single particle and many particles to determine the variables that control the mechanical response of particle-filled tessellations as a function of pressure.<br />Comment: 16 pages, 6 figures

Details

Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....9f10f0399001e2d30a6c7a0cb779f055
Full Text :
https://doi.org/10.48550/arxiv.2303.12070