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  4. A Double-Layered Timber Plate Shell - Computational Methods for Assembly, Prefabrication, and Structural Design
 
conference paper

A Double-Layered Timber Plate Shell - Computational Methods for Assembly, Prefabrication, and Structural Design

Robeller, Christopher  
•
Konakovic, Mina Aleksandra  
•
Dedijer, Mira  
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Adriaenssens, Sigrid
•
Gramazio, Fabio
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2016
Advances in Architectural Geometry 2016
Advances in Architectural Geometry 2016

This paper presents a new lightweight construction system for doubly-curved shells, built from two interconnected layers of structural wood veneer plates. The system uses integral through-tenon joints for a fast, precise, and simple assembly, allowing for the construction of a series of differently shaped shells without a costly mould or support structure. Instead, inclined joints cut with a 5-axis CNC milling machine embed the correct location and angle between plates into the shape of the parts. This constrains the relative motions between joined parts to one assembly path. To take advantage of the benefits of such connectors, the constrained assembly paths must be considered in the fundamental design of the system, allowing for the insertion of each plate. This imposes additional constraints in the segmentation process of doubly-curved shells. In order to meet the requirements and resolve the multi-constraint system, we use a global, non-linear optimisation approach. Developed as a close collaboration between architects, computer scientists and structural engineers, the paper includes an experimental analysis of the influence of parametric modifications in the shape of connectors on their load-bearing performance.

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Type
conference paper
DOI
10.3218/3778-4
Web of Science ID

WOS:000388263200006

Author(s)
Robeller, Christopher  
Konakovic, Mina Aleksandra  
Dedijer, Mira  
Pauly, Mark  
Weinand, Yves  
Editors
Adriaenssens, Sigrid
•
Gramazio, Fabio
•
Kohler, Matthias
•
Menges, Achim
•
Pauly, Mark  
Date Issued

2016

Publisher

vdf Hochschulverlag AG

Publisher place

Zürich

Published in
Advances in Architectural Geometry 2016
ISBN of the book

978-3-7281-3778-4

Total of pages

19

Series title/Series vol.

Advances in Architectural Geometry; 5

Volume

5

Start page

104

End page

122

Subjects

Architectural Geometry

•

Computational Design

•

Digital Fabrication

•

GIS_publi

URL

URL

http://www.aag2016.ch/

URL

http://www.aag2016.ch/
Editorial or Peer reviewed

NON-REVIEWED

Written at

EPFL

EPFL units
GCM  
IBOIS  
Event nameEvent placeEvent date
Advances in Architectural Geometry 2016

Zürich, Switzerland

September 9-13, 2016

Available on Infoscience
September 14, 2016
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/129327
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