Related Experiment Video
Updated: Jan 20, 2026

Characterizing Dissipative Elastic Metamaterials Produced by Additive Manufacturing
Published on: June 28, 2024
Selective buckling via states of self-stress in topological metamaterials
Jayson Paulose1, Anne S Meeussen1, Vincenzo Vitelli2
1Instituut-Lorentz, Universiteit Leiden, 2300 RA Leiden, The Netherlands.
Abstract:
States of self-stress--tensions and compressions of structural elements that result in zero net forces--play an important role in determining the load-bearing ability of structures ranging from bridges to metamaterials with tunable mechanical properties. We exploit a class of recently introduced states of self-stress analogous to topological quantum states to sculpt localized buckling regions in the interior of periodic cellular metamaterials. Although the topological states of self-stress arise in the linear response of an idealized mechanical frame of harmonic springs connected by freely hinged joints, they leave a distinct signature in the nonlinear buckling behavior of a cellular material built out of elastic beams with rigid joints. The salient feature of these localized buckling regions is that they are indistinguishable from their surroundings as far as material parameters or connectivity of their constituent elements are concerned. Furthermore, they are robust against a wide range of structural perturbations. We demonstrate the effectiveness of this topological design through analytical and numerical calculations as well as buckling experiments performed on two- and three-dimensional metamaterials built out of stacked kagome lattices.
Related Concept Videos
Isolation of Stress-Adapted Bacteria through Single Colony Selection
09:39Characterizing Dissipative Elastic Metamaterials Produced by Additive Manufacturing
Buckling of Steel Columns
In the design of civil works, it is important to deliver structures that are not only safe under unexpected loads, but also provide excellent performance under everyday loads at a reasonable economic cost. The latter is often tied to minimum use of materials, ease of fabrication, and rapid construction in the field. Structures made of steel members can be very economical because of the...
08:14Determining Membrane Protein Topology Using Fluorescence Protease Protection (FPP)
13:44Simulation, Fabrication and Characterization of THz Metamaterial Absorbers
11:57Fabricating Metamaterials Using the Fiber Drawing Method
