Additive Manufacturing for the Development of an Assembling System for Gridshells
Chapitre d'ouvrage scientifique
Auteur
Date
2015Résumé
This project results from the collaboration of architects, structural and material scientists. It consists in a multidisciplinary, collective design method, based on the deep relations between material selection, process selection, as well as geometrical and mechanical requirements. Our contribution illustrates the very promising possibilities of 3D printing as a means to solve various issues and innovate in architecture, structural engineering and materials science. This potential raises the question of the role additive manufacturing already has today, and of the role it will have in the next years. Since its appearance, this technology has been presented as a key item to a new industrial revolution, and the many breakthroughs in the materials or processes used and in the first applications found for additive manufacturing seem to guarantee, even if not an industrial revolution, a leading role for additive manufacturing in prototyping and production processes at every scale of fabrication. Along with the potentials of this manufacturing process left to explore and the applications left to invent are also issues to be solved, such as finding a cleaner, more respectful to the environment, way of printing.
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- PIMM_WTM_2015_GAUDILLIÈRE.pdf
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- Chapitre d'ouvrages scientifiques
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Documents liés
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Article dans une revue avec comité de lectureGOSSELIN, Clément; DUBALLET, Romain; ROUX, Philippe; GAUDILLIÈRE, Nadja; DIRRENBERGER, Justin; MOREL, Philippe (Elsevier, 2016)In the present paper a new additive manufacturing processing route is introduced for ultra-high performance concrete. Interdisciplinary work involving materials science, computation, robotics, architecture and design ...
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Chapitre d'ouvrage scientifiqueGAUDILLIÈRE, Nadja; DUBALLET, Romain; BOUYSSOU, Charles; MALLET, Alban; ROUX, Philippe; ZAKERI, Mahriz; DIRRENBERGER, Justin (Butterworth-Heinemann, 2019)In this chapter a new additive manufacturing (AM) processing route is introduced for ultra-high-performance concrete. Interdisciplinary work involving materials science, computation, robotics, architecture, and design ...
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Chapitre d'ouvrage scientifiqueGAUDILLIÈRE, Nadja; DUBALLET, Romain; BOUYSSOU, Charles; MALLET, Alban; ROUX, Philippe; ZAKERI, Mahriz; DIRRENBERGER, Justin (Springer International Publishing, 2018)In the present paper a new additive manufacturing processing route is introduced to produce ultra-high-performance concrete complex architectonic elements, by printing integrated formwork. Interdisciplinary work involving ...
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Article dans une revue avec comité de lectureDUBALLET, Romain; BAVEREL, Olivier; DIRRENBERGER, Justin (Elsevier, 2017)In the present paper, a study is conducted on building systems associated with concrete extrusion-based additive manufacturing techniques. Specific parameters are highlighted - concerning scale, environment, support, and ...
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Article dans une revue avec comité de lectureDUBALLET, Romain; BAVEREL, Olivier; DIRRENBERGER, Justin (Institution of Structural Engineers - Elsevier, 2019)This work presents a generalized method for robotic mortar extrusion, allowing the fabrication of structural-insulating walls of novel performances. It involves two distinct steps that are to be simultaneously automated: ...