Robotic on-site adaptive thin-layer printing: Challenges and workflow for design and fabrication of bespoke cementitious plasterwork at full architectural scale

Selen Ercan Jenny 1
Daniela Mitterberger 1
Ena Lloret-Fritschi 1
Lauren Vasey 1
Eliott Sounigo 1
Ping-Hsun Tsai 1
Petrus Aejmelaeus-Lindström 1
Jenny David 1
Fabio Gramazio 1
Matthias Kohler 1
Publication typeJournal Article
Publication date2022-09-01
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CiteScore
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ISSN27309886, 27309894
Abstract
This paper describes the 1:1 scale application of Robotic Plaster Spraying (RPS), a novel, adaptive thin-layer printing technique, using cementitious base coat plaster, realized in a construction setting. In this technique, the print layers are vertical unlike most 3DCP processes. The goal is to explore the applicability and scalability of this spray-based printing technique. In this study, RPS is combined with an augmented interactive design setup, the Interactive Robotic Plastering (IRoP), which allows users to design directly on the construction site, taking the building structure, as-built state of the on-going fabrication and the material behavior into consideration. The experimental setup is an on-site robotic system that consists of a robotic arm mounted on a semi-mobile vertical axis with an integrated, automated pumping and adaptive spraying setup that is equipped with a depth camera. The user interaction is enabled by a controller-based interaction system, interactive design tools, and an augmented reality interface. The paper presents the challenges and the workflow that is needed to work with a complex material system on-site to produce bespoke plasterwork. The workflow includes an interactive design procedure, localization on-site, process control and a data collection method that enables predicting the behavior of complex-to-simulate cementitious material. The results demonstrate the applicability and scalability of the adaptive thin-layer printing technique and address the challenges, such as maintaining material continuity and working with unpredictable material behavior during the fabrication process.
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Top-30

Journals

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Construction Robotics
2 publications, 28.57%
Automation in Construction
1 publication, 14.29%
Journal of Sustainable Cement-Based Materials
1 publication, 14.29%
Additive Manufacturing
1 publication, 14.29%
Industrializing Additive Manufacturing
1 publication, 14.29%
Russian Chemical Reviews
1 publication, 14.29%
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Publishers

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Springer Nature
3 publications, 42.86%
Elsevier
2 publications, 28.57%
Taylor & Francis
1 publication, 14.29%
Autonomous Non-profit Organization Editorial Board of the journal Uspekhi Khimii
1 publication, 14.29%
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2
3
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Ercan Jenny S. et al. Robotic on-site adaptive thin-layer printing: Challenges and workflow for design and fabrication of bespoke cementitious plasterwork at full architectural scale // Architecture Structures and Construction. 2022.
GOST all authors (up to 50) Copy
Ercan Jenny S., Mitterberger D., Lloret-Fritschi E., Vasey L., Sounigo E., Tsai P., Aejmelaeus-Lindström P., David J., Gramazio F., Kohler M. Robotic on-site adaptive thin-layer printing: Challenges and workflow for design and fabrication of bespoke cementitious plasterwork at full architectural scale // Architecture Structures and Construction. 2022.
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TY - JOUR
DO - 10.1007/s44150-022-00062-9
UR - https://doi.org/10.1007/s44150-022-00062-9
TI - Robotic on-site adaptive thin-layer printing: Challenges and workflow for design and fabrication of bespoke cementitious plasterwork at full architectural scale
T2 - Architecture Structures and Construction
AU - Ercan Jenny, Selen
AU - Mitterberger, Daniela
AU - Lloret-Fritschi, Ena
AU - Vasey, Lauren
AU - Sounigo, Eliott
AU - Tsai, Ping-Hsun
AU - Aejmelaeus-Lindström, Petrus
AU - David, Jenny
AU - Gramazio, Fabio
AU - Kohler, Matthias
PY - 2022
DA - 2022/09/01
PB - Springer Nature
SN - 2730-9886
SN - 2730-9894
ER -
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@article{2022_Ercan Jenny,
author = {Selen Ercan Jenny and Daniela Mitterberger and Ena Lloret-Fritschi and Lauren Vasey and Eliott Sounigo and Ping-Hsun Tsai and Petrus Aejmelaeus-Lindström and Jenny David and Fabio Gramazio and Matthias Kohler},
title = {Robotic on-site adaptive thin-layer printing: Challenges and workflow for design and fabrication of bespoke cementitious plasterwork at full architectural scale},
journal = {Architecture Structures and Construction},
year = {2022},
publisher = {Springer Nature},
month = {sep},
url = {https://doi.org/10.1007/s44150-022-00062-9},
doi = {10.1007/s44150-022-00062-9}
}