Directional mechanical response in the bulk of topological metamaterials
arXiv:1612.00084 · doi:10.1088/1367-2630/aa7155
Abstract
Mechanical metamaterials are those structures designed to convey force and motion in novel and desirable ways. Recently, Kane and Lubensky showed that lattices at the point of marginal mechanical stability (Maxwell lattices) possess a topological invariant that describes the distribution of floppy, zero-energy edge modes. Here, we show that applying force at a point in the bulk of these lattices generates a directional mechanical response, in which stress or strain is induced only on one side of the force. This provides both a bulk metric for mechanical polarization and a design principle to convey stresses and strains towards or away from parts of the structure. We also characterize the effects of removing bonds on the material's structure and floppy modes, establishing a relationship between edge modes and bulk response.
References in corpus (18)
- Topological Photonics
- Topological Acoustics
- Programmable Mechanical Metamaterials
- Mechanical Metamaterials with Negative Compressibility Transitions
- Static non-reciprocity in mechanical metamaterials
- Topological modes bound to dislocations in mechanical metamaterials
- Topological properties of linear circuit lattices
- Classification of topological phonons in linear mechanical metamaterials
- Nonlinear conduction via solitons in a topological mechanical insulator
- Designing allostery-inspired response in mechanical networks
- Topological phonons and Weyl lines in 3 dimensions
- Topological Thermal Hall Effect in Frustrated Kagomé Antiferromagnets
- Topologically protected modes in non-equilibrium stochastic systems
- Dynamical Majorana Edge Modes in a Broad Class of Topological Mechanical Systems
- Kink-antikink asymmetry and impurity interactions in topological mechanical chains
- Topological phonon modes in filamentous structures
- Mechanical Graphene
- Topological Magnon Insulator in NonCoplanar Kagomé Antiferromagnets: Supplemental Material of arXiv:1608.04561
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