Digital Design and Fabrication of Clay Formwork for Concrete Casting (2023-06)¶
, Bruce Mackenzie, Clune Gabrielle, Xie Ruxin, ,
Journal Article - Automation in Construction, Vol. 154, No. 104969
Abstract
This paper investigates the potential of clay extrusion as formwork for casting customized and buildingscale fiber-reinforced concrete elements. Customizable shapes are produced using clay as cheap, sustainable, and easily demoldable formwork, extending its printable height limit. The coupled incremental clay 3D printing and concrete casting process allows the layered casts to start curing and reduces the hydrostatic pressure from concrete. The concluding case study, the Cocoon, demonstrates the method’s capability to achieve building-scale height, integrate openings, and create complex surfaces. The introduced method seeks to challenge techniques and materials for 3D-printed formworks, demonstrating the ability to reduce the environmental impacts of concrete construction without compromising the complexity and time efficiency of bespoke elements.
¶
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BibTeX
@article{moza_bruc_clun_xie.2023.DDaFoCFfCC,
author = "Salma Mozaffari and Mackenzie Bruce and Gabrielle Clune and Ruxin Xie and Wesley McGee and Arash Adel",
title = "Digital Design and Fabrication of Clay Formwork for Concrete Casting",
doi = "10.1016/j.autcon.2023.104969",
year = "2023",
journal = "Automation in Construction",
volume = "154",
pages = "104969",
}
Formatted Citation
S. Mozaffari, M. Bruce, G. Clune, R. Xie, W. McGee and A. Adel, “Digital Design and Fabrication of Clay Formwork for Concrete Casting”, Automation in Construction, vol. 154, p. 104969, 2023, doi: 10.1016/j.autcon.2023.104969.
Mozaffari, Salma, Mackenzie Bruce, Gabrielle Clune, Ruxin Xie, Wesley McGee, and Arash Adel. “Digital Design and Fabrication of Clay Formwork for Concrete Casting”. Automation in Construction 154 (2023): 104969. https://doi.org/10.1016/j.autcon.2023.104969.