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Form-Finding of the Metal 3D-Printed Node with Complex Geometry
Details
The application of additive manufacturing (AM) technology in architecture and structural engineering has been extended due to recent development of metal 3d printing. One of the most common structures namely, space frame consists of a set of bars that is configured in three dimensions, with bars connected by nodes. This article presents two methods to design 3d-printed nodes to accommodate any number of incident bars at arbitrary angles. A multi-branch node is sketched using the dimensional information of the blank space between the converging bars in a pre-designed space frame and then parameterized by two different approaches to perform structural optimization. The optimization procedure is accomplished using a genetic algorithm to minimize the maximum von Mises stress as the objective function subjected to the mass of the node as a constraint function. Finally, functional tests are conducted on 3D printed metal nodes in order to compare the strength and stiffness of the nodes designed by the two form-finding approaches.
Autorentext
Dr. Vahid Hassani promovierte 2014 in Maschinenbau an der Nanyang Technological University. Er kam 2016 an die Singapore University of Technology and Design und arbeitete drei Jahre lang auf dem Gebiet des Designs für additive Fertigung (DFAM). Jetzt forscht er auf demselben Gebiet an der University of Sunderland.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09786200236814
- Sprache Englisch
- Genre Maschinenbau
- Anzahl Seiten 80
- Größe H220mm x B150mm x T5mm
- Jahr 2019
- EAN 9786200236814
- Format Kartonierter Einband
- ISBN 620023681X
- Veröffentlichung 05.07.2019
- Titel Form-Finding of the Metal 3D-Printed Node with Complex Geometry
- Autor Vahid Hassani , Zubin Khabazi
- Gewicht 137g
- Herausgeber LAP LAMBERT Academic Publishing