Today, the most exciting discoveries and fascinating accomplishments are performed on the peripheries of different areas. A not very well-known area which has recently demonstrated spectacular achievements is the application of origami principles in modern science and technology. This approach has advantages that justify the recent attention. This thesis work focuses on the development of origami-based active structures, both reconfigurable and adaptive. We proposed a new synthesis method of origami-based active structures. It is composed of several stages: definition of the application requirements, creation of the origami motif in 2D after a preliminary choice of the base, conversion in 3D, multi-physics modeling, selection of fabrication...
We combine numerical simulations and experiments to design a new class of reconfigurable waveguides ...
The recent trend toward non-standard and free form architecture has generated a lot of debate among ...
Wave propagation inside a fluid-media with periodically distributed solid-inclusions (viz. phononic ...
Today, the most exciting discoveries and fascinating accomplishments are performed on the peripherie...
Aujourd'hui, les découvertes les plus passionnantes et les réalisations les plus fascinantes se déro...
International audienceA Helmholtz resonator is a passive acoustic device that enablesnoise reduction...
International audienceIn this paper, we propose an origami-based auxetic tunable Helmholtz resonator...
Origami has unfolded engineering applications in various fields, such as electrical, civil, aerospac...
Assuring comfortable lighting, thermal and acoustic assets is one of the fundamental problems in ar...
Klasični materiali, ki se uporabljajo v akustiki, so fiksni in se njihove lastnosti ne spreminjajo, ...
Vibration and sound control is critical to many practical engineering systems in order to minimise t...
This main goal of the project consists in proposing a technological solution of an adaptive Helmholt...
We investigate using a reconfigurable metamaterial structure based on high permittivity dielectric e...
Origami robots are machines whose morphologies and functions are created by folding locally flat she...
In this thesis we are interested in the design of robots inspired by non-rigidly foldable origami. R...
We combine numerical simulations and experiments to design a new class of reconfigurable waveguides ...
The recent trend toward non-standard and free form architecture has generated a lot of debate among ...
Wave propagation inside a fluid-media with periodically distributed solid-inclusions (viz. phononic ...
Today, the most exciting discoveries and fascinating accomplishments are performed on the peripherie...
Aujourd'hui, les découvertes les plus passionnantes et les réalisations les plus fascinantes se déro...
International audienceA Helmholtz resonator is a passive acoustic device that enablesnoise reduction...
International audienceIn this paper, we propose an origami-based auxetic tunable Helmholtz resonator...
Origami has unfolded engineering applications in various fields, such as electrical, civil, aerospac...
Assuring comfortable lighting, thermal and acoustic assets is one of the fundamental problems in ar...
Klasični materiali, ki se uporabljajo v akustiki, so fiksni in se njihove lastnosti ne spreminjajo, ...
Vibration and sound control is critical to many practical engineering systems in order to minimise t...
This main goal of the project consists in proposing a technological solution of an adaptive Helmholt...
We investigate using a reconfigurable metamaterial structure based on high permittivity dielectric e...
Origami robots are machines whose morphologies and functions are created by folding locally flat she...
In this thesis we are interested in the design of robots inspired by non-rigidly foldable origami. R...
We combine numerical simulations and experiments to design a new class of reconfigurable waveguides ...
The recent trend toward non-standard and free form architecture has generated a lot of debate among ...
Wave propagation inside a fluid-media with periodically distributed solid-inclusions (viz. phononic ...