id |
acadia21_420 |
authors |
Shaker, Aya; Khader, Noor; Reiter, Lex; Anton, Ana |
year |
2021 |
title |
3D Printed Concrete Tectonics |
doi |
https://doi.org/10.52842/conf.acadia.2021.420
|
source |
ACADIA 2021: Realignments: Toward Critical Computation [Proceedings of the 41st Annual Conference of the Association of Computer Aided Design in Architecture (ACADIA) ISBN 979-8-986-08056-7]. Online and Global. 3-6 November 2021. edited by B. Bogosian, K. Dörfler, B. Farahi, J. Garcia del Castillo y López, J. Grant, V. Noel, S. Parascho, and J. Scott. 420-427. |
summary |
Digital fabrication technologies and additive manufacturing techniques opened new opportunities and new challenges for the construction industry. Particularly, Concrete Extrusion 3D Printing (CE3DP) introduces valuable opportunities for large-scale architectural elements. However, segmentation and assembly strategies haven’t been developed, and it remains a limiting factor for the expansion of concrete 3d printing to an industrial scale. In this context, the present research focuses on the design and fabrication possibilities of assembly interfaces, an essential topic for scaled-up 3D printed concrete components. Therefore, dry assembly interfaces in different printing orientations are prototyped to investigate characteristics and limitations of connection options. |
series |
ACADIA |
type |
paper |
email |
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full text |
file.pdf (5,661,647 bytes) |
references |
Content-type: text/plain
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Fast Complexity: Additive Manufacturing for Prefabricated Concrete Slabs
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last changed |
2023/10/22 12:06 |
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