English

Auxetic Granular Metamaterials

Soft Condensed Matter 2023-10-06 v1 Materials Science Applied Physics

Abstract

The flowing, jamming and avalanche behavior of granular materials is satisfyingly universal and vexingly hard to tune: a granular flow is typically intermittent and will irremediably jam if too confined. Here, we show that granular metamaterials made from particles with a negative Poisson's ratio yield more easily and flow more smoothly than ordinary granular materials. We first create a collection of auxetic grains based on a re-entrant mechanism and show that each grain exhibits a negative Poisson's ratio regardless of the direction of compression. Interestingly, we find that the elastic and yielding properties are governed by the high compressibility of granular metamaterials: at a given confinement they exhibit lower shear modulus, lower yield stress and more frequent, smaller avalanches than materials made from ordinary grains. We further demonstrate that granular metamaterials promote flow in more complex confined geometries, such as intruder and hopper geometries, even when the packing contains only a fraction of auxetic grains. Our findings blur the boundary between complex fluids and metamaterials and could help in scenarios that involve process, transport and reconfiguration of granular materials.

Keywords

Cite

@article{arxiv.2310.03547,
  title  = {Auxetic Granular Metamaterials},
  author = {Daan Haver and Daniel Acuña and Shahram Janbaz and Edan Lerner and Gustavo Düring and Corentin Coulais},
  journal= {arXiv preprint arXiv:2310.03547},
  year   = {2023}
}
R2 v1 2026-06-28T12:41:33.694Z