English

Mechanical Metamaterials with Negative Compressibility Transitions

Materials Science 2012-07-11 v1 Disordered Systems and Neural Networks Statistical Mechanics

Abstract

When tensioned, ordinary materials expand along the direction of the applied force. Here, we explore network concepts to design metamaterials exhibiting negative compressibility transitions, during which a material undergoes contraction when tensioned (or expansion when pressured). Continuous contraction of a material in the same direction of an applied tension, and in response to this tension, is inherently unstable. The conceptually similar effect we demonstrate can be achieved, however, through destabilisations of (meta)stable equilibria of the constituents. These destabilisations give rise to a stress-induced solid-solid phase transition associated with a twisted hysteresis curve for the stress-strain relationship. The strain-driven counterpart of negative compressibility transitions is a force amplification phenomenon, where an increase in deformation induces a discontinuous increase in response force. We suggest that the proposed materials could be useful for the design of actuators, force amplifiers, micro-mechanical controls, and protective devices.

Keywords

Cite

@article{arxiv.1207.2185,
  title  = {Mechanical Metamaterials with Negative Compressibility Transitions},
  author = {Zachary G. Nicolaou and Adilson E. Motter},
  journal= {arXiv preprint arXiv:1207.2185},
  year   = {2012}
}

Comments

Supplementary information available at http://www.nature.com/nmat/journal/v11/n7/abs/nmat3331.html

R2 v1 2026-06-21T21:33:02.891Z