Origami-inspired mechanical metamaterials have recently drawn increasing attention since their flexible mechanical performance has been greatly enhanced by introducing origami patterns to the thin-shell structures. As a typical origami pattern, the waterbomb tube could be adopted to the design of mechanical metamaterials. However, existing designs predominantly make use of the radial expansion/contraction motion of the structure, thereby limiting its full potential to be explored. Here we report a twist motion of tubular mechanical metamaterials based on waterbomb origami that is previously undiscovered. We demonstrate through a detailed kinematic analysis that the initial twist is a rigid-origami motion if the corresponding row of the tube...
The traditional waterbomb origami, produced from a pattern consisting of a series of vertices where ...
Rigid foldability allows an origami pattern to fold about crease lines without twisting or stretchin...
The integration of soft actuating materials within origami-based mechanisms is a novel method to amp...
Origami-inspired mechanical metamaterials have recently drawn increasing attention since their flexi...
Origami-inspired mechanical metamaterials have recently drawn increasing attention since their flexi...
Origami has recently emerged as a promising building block of mechanical metamaterials because it of...
This paper develops an origami based mechanical metamaterial with programmable deformation-dependent...
This paper develops an origami based mechanical metamaterial with programmable deformation-dependent...
Rigidly foldable origami tubes with open ends have been reported in the past. Here using a mechanism...
Using non-rigid-foldable origami patterns to design mechanical metamaterials could 14 potentially of...
Origami has gained popularity in science and engineering because a compactly stowed system can be fo...
Origami metamaterial has gradually shown its potential in the fields of science and engineering due ...
This paper presents two new types of origami-inspired mechanical metamaterials based on the Miura-de...
My work has been focused on compliant mechanisms, origami engineering, and rapid prototyping. Two of...
International audienceWe study the three-dimensional equilibrium shape of a shell formed by a deploy...
The traditional waterbomb origami, produced from a pattern consisting of a series of vertices where ...
Rigid foldability allows an origami pattern to fold about crease lines without twisting or stretchin...
The integration of soft actuating materials within origami-based mechanisms is a novel method to amp...
Origami-inspired mechanical metamaterials have recently drawn increasing attention since their flexi...
Origami-inspired mechanical metamaterials have recently drawn increasing attention since their flexi...
Origami has recently emerged as a promising building block of mechanical metamaterials because it of...
This paper develops an origami based mechanical metamaterial with programmable deformation-dependent...
This paper develops an origami based mechanical metamaterial with programmable deformation-dependent...
Rigidly foldable origami tubes with open ends have been reported in the past. Here using a mechanism...
Using non-rigid-foldable origami patterns to design mechanical metamaterials could 14 potentially of...
Origami has gained popularity in science and engineering because a compactly stowed system can be fo...
Origami metamaterial has gradually shown its potential in the fields of science and engineering due ...
This paper presents two new types of origami-inspired mechanical metamaterials based on the Miura-de...
My work has been focused on compliant mechanisms, origami engineering, and rapid prototyping. Two of...
International audienceWe study the three-dimensional equilibrium shape of a shell formed by a deploy...
The traditional waterbomb origami, produced from a pattern consisting of a series of vertices where ...
Rigid foldability allows an origami pattern to fold about crease lines without twisting or stretchin...
The integration of soft actuating materials within origami-based mechanisms is a novel method to amp...