Continuous Mobile Thin-Layer On-Site Printing (2022-11)¶
, Pietrasik Lukasz, Sounigo Eliott, Tsai Ping-Hsun, , , ,
Journal Article - Automation in Construction, Vol. 146
Abstract
Quasi-static robotic systems and discrete fabrication strategies fall short of the capabilities needed for automating on-site plastering, which involves operating over large spans and maintaining material continuity. This paper presents continuous, mobile Robotic Plaster Spraying (RPS) – a thin-layer, spray-based printing-in-motion technique using cementitious plaster – realized on a prototypical construction site. The experimental setup consists of a fully mobile, custom wheeled base that is synchronized with a robotic arm, and an integrated pumping and spraying system. In this 1:1 scale application, the print layers are executed during the motion of the mobile robot and they are printed vertically on the walls of an existing building structure. The experiments showcase the potentials of producing bespoke – three-dimensional – or standardized – flat – plasterwork with the proposed technique. The results demonstrate the applicability and scalability of RPS and the findings contribute to the research on mobile additive fabrication.
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BibTeX
@article{jenn_piet_soun_tsai.2023.CMTLOSP,
author = "Ercan Selen Jenny and Lukasz L. Pietrasik and Eliott Sounigo and Ping-Hsun Tsai and Fabio Gramazio and Matthias Daniel Kohler and Ena Lloret-Fritschi and Marco Hutter",
title = "Continuous Mobile Thin-Layer On-Site Printing",
doi = "10.1016/j.autcon.2022.104634",
year = "2023",
journal = "Automation in Construction",
volume = "146",
}
Formatted Citation
E. S. Jenny, “Continuous Mobile Thin-Layer On-Site Printing”, Automation in Construction, vol. 146, 2023, doi: 10.1016/j.autcon.2022.104634.
Jenny, Ercan Selen, Lukasz L. Pietrasik, Eliott Sounigo, Ping-Hsun Tsai, Fabio Gramazio, Matthias Daniel Kohler, Ena Lloret-Fritschi, and Marco Hutter. “Continuous Mobile Thin-Layer On-Site Printing”. Automation in Construction 146 (2023). https://doi.org/10.1016/j.autcon.2022.104634.