Robotic 3D Printing of Mineral Foam for a Lightweight Composite Facade Shading Panel (2021-04)¶
10.52842/conf.caadria.2021.1.603
, Schulte Dinorah, Şenol Ayça, Jeoffroy Etienne,
Contribution - Proceedings of the 26th International Conference of the Association for Computer-Aided Architectural Design Research in Asia, pp. 603-612
Abstract
This paper presents the design and fabrication of a lightweight composite facade shading panel using 3D printing (3DP) of mineral foams. Albeit their important role in industrial construction practice as insulators and lightweight materials, only little research has been conducted to use foams in 3DP. However, the recent development of highly porous mineral foams that are very suitable for extrusion printing opens a new chapter for development ofgeometrically complex lightweight building components with efficient formwork-free additive manufacturing processes. The work documented in this paper was based on preliminary material and fabrication development ofa larger research endeavor and systematically explored designs for small interlocking foam modules. Furthermore, the robotic 3D Printing setup and subsequent processing parameters were tested in detail. Through extensive prototyping, the design space of a final demonstrator shading panel was mapped and refined. The design and fabrication process is documented and shows the potential of the novel material system in combination with fiber-reinforced ultra-high performance concrete (UHPC). The resulting composite shading panel highlights the benefits ofusing mineral foam 3DP to fabricate freeform stay-in-place formwork for lightweight facade applications. Furthermore, this paper discusses the challenges and limitations encountered during the project and gives a conclusive outlook for future research
¶
5 References
- Delgado Camacho Daniel, Clayton Patricia, Brien William, Seepersad Carolyn et al. (2018-02)
Applications of Additive Manufacturing in the Construction Industry:
A Forward-Looking Review - Furet Benoît, Poullain Philippe, Garnier Sébastien (2019-04)
3D Printing for Construction Based on a Complex Wall of Polymer-Foam and Concrete - Keating Steven, Leland Julian, Cai Levi, Oxman Neri (2017-04)
Toward Site-Specific and Self-Sufficient Robotic Fabrication on Architectural-Scales - Kontovourkis Odysseas, Tryfonos George (2019-11)
Robotic 3D Clay Printing of Prefabricated Non-Conventional Wall Components Based on a Parametric-Integrated Design - Lim Sungwoo, Buswell Richard, Le Thanh, Austin Simon et al. (2011-07)
Developments in Construction-Scale Additive Manufacturing Processes
5 Citations
- Vargas José, Westerlind Helena, Breseghello Luca, Silfwerbrand Johan (2025-03)
Design of Porous Structures in 3D Concrete Printing Using Procedural Print Patterns - Vargas José, Westerlind Helena, Breseghello Luca, Silfwerbrand Johan (2025-03)
Design of Porous Structures in 3D Concrete Printing Using Procedural Print Patterns - Bedarf Patrick, Calvo Barentin Cristian, Schulte Dinorah, Şenol Ayça et al. (2023-02)
Mineral Composites:
Stay-in-Place Formwork for Concrete Using Foam 3D Printing - Bedarf Patrick, Szabó Anna, Zanini Michele, Heusi Alex et al. (2022-04)
Robotic 3D Printing of Mineral Foam for a Lightweight Composite Concrete Slab - Bedarf Patrick, Dutto Alessandro, Zanini Michele, Dillenburger Benjamin (2021-08)
Foam 3D Printing for Construction:
A Review of Applications, Materials, and Processes
BibTeX
@inproceedings{beda_schu_seno_jeof.2021.R3PoMFfaLCFSP,
author = "Patrick Bedarf and Dinorah Martinez Schulte and Ayça Şenol and Etienne Jeoffroy and Benjamin Dillenburger",
title = "Robotic 3D Printing of Mineral Foam for a Lightweight Composite Facade Shading Panel",
doi = "10.52842/conf.caadria.2021.1.603",
year = "2021",
pages = "603--612",
booktitle = "Proceedings of the 26th International Conference of the Association for Computer-Aided Architectural Design Research in Asia: Projections",
}
Formatted Citation
P. Bedarf, D. M. Schulte, A. Şenol, E. Jeoffroy and B. Dillenburger, “Robotic 3D Printing of Mineral Foam for a Lightweight Composite Facade Shading Panel”, in Proceedings of the 26th International Conference of the Association for Computer-Aided Architectural Design Research in Asia: Projections, 2021, pp. 603–612. doi: 10.52842/conf.caadria.2021.1.603.
Bedarf, Patrick, Dinorah Martinez Schulte, Ayça Şenol, Etienne Jeoffroy, and Benjamin Dillenburger. “Robotic 3D Printing of Mineral Foam for a Lightweight Composite Facade Shading Panel”. In Proceedings of the 26th International Conference of the Association for Computer-Aided Architectural Design Research in Asia: Projections, 603–12, 2021. https://doi.org/10.52842/conf.caadria.2021.1.603.