3D micro-/nanofabrication holds the key to build a large variety of micro-/nanoscale materials, structures, devices, and systems with unique properties that do not manifest in their 2D planar ...
"What we have here is the proof of concept of an integrated system for manufacturing complex origami. It has tremendous potential applications," said Glaucio H. Paulino, a professor at the School of ...
Back in 1999, Erik Demaine was a PhD student who created an algorithm that determined the folding patterns necessary to turn a piece of paper into any 3D shape. However, the algorithm was far from ...
Origami has inspired the design of structures with unique properties, finding a huge range of potential uses, including soft robots and stretchable electronics. Now researchers from Georgia Institute ...
This novel fabrication process makes lightweight, expandable, 3D structures. Engineers at The Georgia Institute of Technology have merged the ancient art of folding paper, origami, with 3D printing to ...
Origami has become known as a miracle technique for designers. Elegant compliant mechanisms can leverage the material properties of a single geometry in ways that are sometimes stronger than those of ...
Accessing Origami Simulator looks like this. The origami 3D model is displayed in the center. In Origami Simulator, instead of sequentially displaying origami folding methods, it shows what happens ...
You can make a typical origami crane in about 20 folds. Now multiply that by 300. That’s about how many folds one Finnish artist uses to make his exquisitely intricate origami characters. Twenty-three ...
Interesting Engineering on MSN
China’s ‘floating’ 3D origami brain implant could prevent thread retraction seen in Neuralink
Chinese researchers have developed a new soft and stretchable origami-inspired brain implant. Designed to ...
Some results have been hidden because they may be inaccessible to you
Show inaccessible results