This report explores the use of origami techniques in the space, medical and military fields. This new design method will modify the design process and reduce costs. The origami design method will also improve the device’s performance and quality of the device. The most important and complex procedures are the selection and the fabrication processes for designing the origami devices. New software is necessary for origami design. The military, medical, and space sectors are leading this research and development. As the concept is new, very few devices have been made with success. This paper outlines the development of origami design and describes the applications as well as the material selection and fabrication process
International audienceOrigami (paperfolding) has greatly progressed since its first usage for design...
This work provides an overview of two developments in origami-based mechanism design. Past methods o...
The Robotic Origami project is sponsored by Dr. James Olson at the University of British Columbia fo...
This report explores the use of origami techniques in the space, medical and military fields. This n...
The art of paper folding also known as Origami plays an important role in various research areas of ...
With the ever-increasing demand for wireless communications, there is a great need for efficient des...
The art of paper folding also known as Origami plays an important role in various research areas of ...
Antennas play a crucial role in communication systems since they are the transmitting/receiving elem...
Abstract Origami‐based designs refer to the application of the ancient art of origami to solve engin...
The thesis was carried out by Olov Lundgren Kuosmonen and Lola Naraha Jönsson together with AMEXCI A...
We propose a push/pull origami antenna, transformable between a single antenna element and a three-e...
International audienceOrigami is the ancient art of paper folding. It started with traditional desig...
This paper presents the fundamentals of Origami engineering and its application in nowadays as well ...
This paper presents the fundamentals of Origami engineering and its application in nowadays as well ...
Origami, an ancient art of paperfolding, has evolved beyond its traditional use for cultural and ent...
International audienceOrigami (paperfolding) has greatly progressed since its first usage for design...
This work provides an overview of two developments in origami-based mechanism design. Past methods o...
The Robotic Origami project is sponsored by Dr. James Olson at the University of British Columbia fo...
This report explores the use of origami techniques in the space, medical and military fields. This n...
The art of paper folding also known as Origami plays an important role in various research areas of ...
With the ever-increasing demand for wireless communications, there is a great need for efficient des...
The art of paper folding also known as Origami plays an important role in various research areas of ...
Antennas play a crucial role in communication systems since they are the transmitting/receiving elem...
Abstract Origami‐based designs refer to the application of the ancient art of origami to solve engin...
The thesis was carried out by Olov Lundgren Kuosmonen and Lola Naraha Jönsson together with AMEXCI A...
We propose a push/pull origami antenna, transformable between a single antenna element and a three-e...
International audienceOrigami is the ancient art of paper folding. It started with traditional desig...
This paper presents the fundamentals of Origami engineering and its application in nowadays as well ...
This paper presents the fundamentals of Origami engineering and its application in nowadays as well ...
Origami, an ancient art of paperfolding, has evolved beyond its traditional use for cultural and ent...
International audienceOrigami (paperfolding) has greatly progressed since its first usage for design...
This work provides an overview of two developments in origami-based mechanism design. Past methods o...
The Robotic Origami project is sponsored by Dr. James Olson at the University of British Columbia fo...