Inspired by the strong nonlinearity of origami cartons, a novel origami-inspired constant-force mechanism (OriCFM) is systematically studied for obtaining a stable quasi-static constant force output. The proposed OriCFM is evolved by adding equivalent springs at horizontal and oblique creases of the rigid origami mechanism. Based on the geometry relationship, the mechanical model of the origami carton is established and its zero-stiffness is obtained. The influence of structural parameters and spring stiffness on the constant force characteristic of the OriCFM is analyzed in detail. By configuring different numbers of horizontal springs, various output characteristics could be observed in the prototype experiment. The case of 4 oblique spri...
This paper presents two integrated planar-spherical overconstrained mechanisms that are inspired and...
This paper presents two integrated planar-spherical overconstrained mechanisms that are inspired and...
This paper presents two integrated planar-spherical overconstrained mechanisms that are inspired and...
This paper provides an approach to model the reaction force of origami mechanisms when they are defo...
Origami mechanisms are fabricated from a simple sheet material, but can exhibit complex motions in 3...
Origami, the Japanese art of paper folding, has been used previously to inspire engineering solution...
This work provides an overview of two developments in origami-based mechanism design. Past methods o...
This work provides an overview of two developments in origami-based mechanism design. Past methods o...
This work provides an overview of two developments in origami-based mechanism design. Past methods o...
International audienceOrigami inspired robot is a local motion machine whose morphology and operatio...
International audienceOrigami inspired robot is a local motion machine whose morphology and operatio...
The design of origami structures typically requires the folding/deployment kinematics to be solved a...
International audienceOrigami inspired robot is a local motion machine whose morphology and operatio...
This research uses Origami patterns and folding techniques to generate non-linear force displacement...
This research uses Origami patterns and folding techniques to generate non-linear force displacement...
This paper presents two integrated planar-spherical overconstrained mechanisms that are inspired and...
This paper presents two integrated planar-spherical overconstrained mechanisms that are inspired and...
This paper presents two integrated planar-spherical overconstrained mechanisms that are inspired and...
This paper provides an approach to model the reaction force of origami mechanisms when they are defo...
Origami mechanisms are fabricated from a simple sheet material, but can exhibit complex motions in 3...
Origami, the Japanese art of paper folding, has been used previously to inspire engineering solution...
This work provides an overview of two developments in origami-based mechanism design. Past methods o...
This work provides an overview of two developments in origami-based mechanism design. Past methods o...
This work provides an overview of two developments in origami-based mechanism design. Past methods o...
International audienceOrigami inspired robot is a local motion machine whose morphology and operatio...
International audienceOrigami inspired robot is a local motion machine whose morphology and operatio...
The design of origami structures typically requires the folding/deployment kinematics to be solved a...
International audienceOrigami inspired robot is a local motion machine whose morphology and operatio...
This research uses Origami patterns and folding techniques to generate non-linear force displacement...
This research uses Origami patterns and folding techniques to generate non-linear force displacement...
This paper presents two integrated planar-spherical overconstrained mechanisms that are inspired and...
This paper presents two integrated planar-spherical overconstrained mechanisms that are inspired and...
This paper presents two integrated planar-spherical overconstrained mechanisms that are inspired and...