HingeCore: Laser-Cut Foamcore for Fast Assembly

要旨

We present HingeCore, a novel type of laser-cut 3D structure made from sandwich materials, such as foamcore. The key design element behind HingeCore is what we call a finger hinge, which we produce by laser-cutting foamcore “half-way”. The primary benefit of finger hinges is that they allow for very fast assembly, as they allow models to be assembled by folding and because folded hinges stay put at the intended angle, based on the friction between fingers alone, which eliminates the need for glue or tabs. Finger hinges are also highly robust, with some 5mm foamcore models withstanding 62kg. We present HingeCoreMaker, a stand-alone software tool that automatically converts 3D models to HingeCore layouts, as well as an integration into a 3D modeling tool for laser cutting (Kyub [7]). We have used Hinge-CoreMaker to fabricate design objects, including speakers, lamps, and a life-size bust, as well as structural objects, such as functional furniture. In our user study, participants assembled HingeCore layouts 2.9x faster than layouts generated using the state-of-the-art for plate-based assembly (Roadkill [1]).

著者
Muhammad Abdullah
Hasso Plattner Institute, Potsdam, Germany
Romeo Sommerfeld
Hasso Plattner Institute, Potsdam, Germany
Bjarne Sievers
Hasso Plattner Institute, Potsdam, Germany
Leonard Geier
Hasso Plattner Institute, Potsdam, Germany
Jonas Noack
Hasso Plattner Institute, Potsdam, Germany
Marcus Ding
Hasso Plattner Institute, Potsdam, Germany
Christoph Thieme
Hasso Plattner Institute, Potsdam, Germany
Laurenz Seidel
Hasso Plattner Institute, Potsdam, Germany
Lukas Fritzsche
Hasso Plattner Institute, Potsdam, Germany
Erik Langenhan
Hasso Plattner Institute, Potsdam, Germany
Oliver Adameck
Hasso Plattner Institute, Potsdam, Germany
Moritz Dzingel
Hasso Plattner Institute, Potsdam, Germany
Thomas Kern
Hasso Plattner Institute, Potsdam, Germany
Martin Taraz
Hasso Plattner Institute, Potsdam, Germany
Conrad Lempert
Hasso Plattner Institute, Potsdam, Germany
Shohei Katakura
Hasso Plattner Institute, Potsdam, Germany
Hany Mohsen. Elhassany
Hasso Plattner Institute, Potsdam, Germany
Thijs Roumen
Hasso Plattner Institute, Potsdam, Germany
Patrick Baudisch
Hasso Plattner Institute, Potsdam, Germany
論文URL

https://doi.org/10.1145/3526113.3545618

会議: UIST 2022

The ACM Symposium on User Interface Software and Technology

セッション: Fabrication

6 件の発表
2022-10-31 20:00:00
2022-10-31 21:30:00