We combine numerical simulations and experiments to design a new class of reconfigurable waveguides based on three-dimensional origami-inspired metamaterials. Our strategy builds on the fact that the rigid plates and hinges forming these structures define networks of tubes that can be easily reconfigured. As such, they provide an ideal platform to actively control and redirect the propagation of sound. We design reconfigurable systems that, depending on the externally applied deformation, can act as networks of waveguides oriented along one, two, or three preferential directions. Moreover, we demonstrate that the capability of the structure to guide and radiate acoustic energy along predefined directions can be easily switched on and off, a...
Most of the existing acoustic metamaterials rely on architected structures with fixed configurations...
International audienceA Helmholtz resonator is a passive acoustic device that enablesnoise reduction...
We investigate the nonlinear wave dynamics of origami-based metamaterials composed of Tachi-Miura po...
International audienceWe combine numerical simulations and experiments to design a new class of reco...
Wave propagation inside a fluid-media with periodically distributed solid-inclusions (viz. phononic ...
International audienceWe investigate two-dimensional phononic metaplates consisting of a periodic ar...
International audienceWe study numerically and experimentally acoustoelastic wave propagation in a t...
Thesis (Ph.D.)--University of Washington, 2018Origami has recently received significant interest fro...
The topics deliberated in this dissertation are ingrained in the idea of controlling wave transmissi...
Artificially structured composite materials have the ability to manipulate the propagation of elasti...
In the search for materials with new properties, there have been significant advances in recent year...
The topologically protected wave propagation offers a novel class of energy and/or information trans...
Elastic metamaterials have been considered as important tools for vibration and noise reduction beca...
To overcome the negative impact of diffraction effect on the transmission wave front at the bend and...
Reconfigurable devices, whose shape can be drastically altered, are central to expandable shelters, ...
Most of the existing acoustic metamaterials rely on architected structures with fixed configurations...
International audienceA Helmholtz resonator is a passive acoustic device that enablesnoise reduction...
We investigate the nonlinear wave dynamics of origami-based metamaterials composed of Tachi-Miura po...
International audienceWe combine numerical simulations and experiments to design a new class of reco...
Wave propagation inside a fluid-media with periodically distributed solid-inclusions (viz. phononic ...
International audienceWe investigate two-dimensional phononic metaplates consisting of a periodic ar...
International audienceWe study numerically and experimentally acoustoelastic wave propagation in a t...
Thesis (Ph.D.)--University of Washington, 2018Origami has recently received significant interest fro...
The topics deliberated in this dissertation are ingrained in the idea of controlling wave transmissi...
Artificially structured composite materials have the ability to manipulate the propagation of elasti...
In the search for materials with new properties, there have been significant advances in recent year...
The topologically protected wave propagation offers a novel class of energy and/or information trans...
Elastic metamaterials have been considered as important tools for vibration and noise reduction beca...
To overcome the negative impact of diffraction effect on the transmission wave front at the bend and...
Reconfigurable devices, whose shape can be drastically altered, are central to expandable shelters, ...
Most of the existing acoustic metamaterials rely on architected structures with fixed configurations...
International audienceA Helmholtz resonator is a passive acoustic device that enablesnoise reduction...
We investigate the nonlinear wave dynamics of origami-based metamaterials composed of Tachi-Miura po...