id |
acadia22pr_136 |
authors |
Tanadini, Davide; Boller, Giulia; Victor Leung, Pok Yin; Huang, Yijiang; D’Acunto, Pierluigi |
year |
2022 |
title |
The CantiBox - Robotic Assembly of Interweaving Timber Linear Elements Using Bespoke Interlocking Timber-to-Timber Connections |
source |
ACADIA 2022: Hybrids and Haecceities [Projects Catalog of the 42nd Annual Conference of the Association of Computer Aided Design in Architecture (ACADIA) ISBN 979-8-9860805-7-4]. University of Pennsylvania Stuart Weitzman School of Design. 27-29 October 2022. edited by M. Akbarzadeh, D. Aviv, H. Jamelle, and R. Stuart-Smith. 136-141. |
summary |
The robotically fabricated CantiBox project presented here constitutes a novel application of the design and automatic assembly of interlocking timber- to-timber connections. The structure is composed of 60 linear elements of solid spruce interconnected through half-lap joints to form a reciprocal network. |
series |
ACADIA |
type |
project |
email |
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full text |
file.pdf (8,012,676 bytes) |
references |
Content-type: text/plain
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Andreas Thoma, Arash Adel, Matthias Helmreich, Thomas Wehrle, Fabio Gramazio, and Matthias Kohler (2018)
Robotic Fabrication of Bespoke Timber Frame Modules
, Robotic Fabrication in Architecture, Art and Design 2018. Cham: Springer. 447–458.
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, Proceedings of CAADRIA 2022. Sydney: CAADRIA. 41–50
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Robotic integral attachment
, Fabricate 2017. London: UCL Press
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Davide Tanadini and Joseph Schwartz (2021)
Analysis and design of timber-to-timber connections based on the lower bound theorem of the theory of plasticity
, Proceedings of the WCTE 2021. Santiago: WCTE
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Pok Yin Victor Leung, Aleksandra Anna Apolinarska, Davide Tanadini, Fabio Gramazio, and Matthias Kohler (2021)
Automatic assembly of jointed timber structure using distributed robotic clamps
, Proceedings of CAADRIA 2021. Hong Kong: CAADRIA. 583–592
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Swiss Society of Engineers and Architects (2021)
SIA 260: Basis of Structural Design
, SIA 261: Actions on Structures
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last changed |
2024/02/06 14:06 |
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