| Literature DB >> 29507518 |
Daniel Rayneau-Kirkhope1,2, Chengzhao Zhang2,3, Louis Theran2,4, Marcelo A Dias2,5.
Abstract
In recent years, many structural motifs have been designed with the aim of creating auxetic metamaterials. One area of particular interest in this subject is the creation of auxetic material properties through elastic instability. Such metamaterials switch from conventional behaviour to an auxetic response for loads greater than some threshold value. This paper develops a novel methodology in the analysis of auxetic metamaterials which exhibit elastic instability through analogy with rigid link lattice systems. The results of our analytic approach are confirmed by finite-element simulations for both the onset of elastic instability and post-buckling behaviour including Poisson's ratio. The method gives insight into the relationships between mechanisms within lattices and their mechanical behaviour; as such, it has the potential to allow existing knowledge of rigid link lattices with auxetic paths to be used in the design of future buckling-induced auxetic metamaterials.Keywords: auxetic; lattices; mechanical metamaterials; post-buckling
Year: 2018 PMID: 29507518 PMCID: PMC5832839 DOI: 10.1098/rspa.2017.0753
Source DB: PubMed Journal: Proc Math Phys Eng Sci ISSN: 1364-5021 Impact factor: 2.704