Diamanti (2024-04)¶
, , , Ororbia Maximilian, , , Bolhassani Damon, Yavartanoo Fahimeh, Tapia Javier, Pajak Karolina, Bernard Mylène, Trousset Leon, Kassabian Paul, Waligun Blaise
Contribution - Fabricate 2024, pp. 292-301
Abstract
This academia–industry collaborative project, Diamanti canopy, demonstrates the design and fabrication of a combined compression and tension funicular canopy with periodic anticlastic, diamond surfaces (Fig. 3). The canopy is a part of the European Cultural Centre’s 2024 biennial exhibition, ‘Personal Structures’, in Venice, Italy, at the Giardini della Marinaressa (Fig. 2). Utilising both 3D concrete printing (3DCP) and post-tensioning technologies, the canopy spans 10m and is supported by a cross-laminated timber (CLT) platform (Fig. 4). The structural form of this composite canopy directly considers both compressive and tensile forces, inherently developed in concrete structural systems, by distributing loads through its unique, minimal-mass geometry. The CLT platform suggests how the combination of a carbon-negative material and concrete can be used in contrast to common construction methods where concrete is typically used as the load-bearing support and wood as the spanning element. Hence, the lightweight design of the Diamanti canopy, spanning over and supported by the CLT platform, showcases the innovative use of these materials, while also satisfying the Venice Port Authority’s installation requirements.
¶
1 References
8 Citations
- Wang Zherui, Teitelbaum E., Akbarzadeh Masoud, Aviv D. (2025-11)
Experimental Assessment on Thermal Mass Performance of Structurally Optimized, 3D-Printed Concrete Floor Element for Carbon Emission Reduction - Yavartanoo Fahimeh, Bolhassani Damon, Akbarzadeh Masoud, Ororbia Maximilian et al. (2025-10)
Advanced Finite Element Modeling of 3D-Printed Post-Tensioned Concrete Beams with Experimental Validation - Zhi Yefan, Akbarzadeh Masoud (2025-10)
Surface-Toolpath Twins of Shell Components in 3D Concrete Printing for Optimized Buildability and Surface Quality - Huang Shuyi, Anton Ana-Maria, Dillenburger Benjamin, Xu Weiguo (2025-06)
Lamella-Inspired 3D Concrete Printed Column-Slab System:
Balancing Act for Productivity and Sustainability - Yu Kun-Hao, Teng Teng, Nah So, Chai Hua et al. (2025-05)
3D Concrete Printing of Triply Periodic Minimum Surfaces for Enhanced Carbon Capture and Storage - Zhi Yefan, Chai Hua, Teng Teng, Akbarzadeh Masoud (2025-02)
Automated Toolpath Design of 3D Concrete Printing Structural Components - Kamhawi Abdallah, Meibodi Mania (2024-09)
Techniques and Strategies in Extrusion-Based 3D Concrete Printing of Complex Components to Prevent Premature Failure - Ororbia Maximilian, Chai Hua, Zhi Yefan, Vakhshouri Pouria et al. (2024-08)
Experimental Study of a Funicular Concrete Beam Prototype
BibTeX
@inproceedings{akba_chai_zhi_oror.2024.D,
author = "Masoud Akbarzadeh and Hua Chai and Yefan Zhi and Maximilian E. Ororbia and Teng Teng and Mathias Bernhard and Damon Bolhassani and Fahimeh Yavartanoo and Javier Tapia and Karolina Pajak and Mylène Bernard and Leon Trousset and Paul Kassabian and Blaise Waligun",
title = "Diamanti: 3D Printed, Post-Tensioned Concrete Canopy",
doi = "10.2307/jj.11374766.40",
year = "2024",
pages = "292--301",
booktitle = "Fabricate 2024: Creating Resourceful Futures",
editor = "Phil Ayres and Mette Ramsgaard Thomsen and Bob Sheil and Marilena Skavara",
}
Formatted Citation
M. Akbarzadeh, “Diamanti: 3D Printed, Post-Tensioned Concrete Canopy”, in Fabricate 2024: Creating Resourceful Futures, 2024, pp. 292–301. doi: 10.2307/jj.11374766.40.
Akbarzadeh, Masoud, Hua Chai, Yefan Zhi, Maximilian E. Ororbia, Teng Teng, Mathias Bernhard, Damon Bolhassani, et al.. “Diamanti: 3D Printed, Post-Tensioned Concrete Canopy”. In Fabricate 2024: Creating Resourceful Futures, edited by Phil Ayres, Mette Ramsgaard Thomsen, Bob Sheil, and Marilena Skavara, 292–301, 2024. https://doi.org/10.2307/jj.11374766.40.