Design, Development and Experimental Assessment of a Robotic End-Effector for Non-Standard Concrete Applications (2017-06)¶
, , , , Rey Gonzalo Javier, , ,
Contribution - IEEE International Conference on Robotics and Automation, pp. 1707-1713
Abstract
Despite the recent advances in, and the adoption of robotic technologies in the construction industry, the architectural processes which demand a high degree of geometric freedom still remain largely labour intensive and manual. This is due to the inherent difficulties in robotizing the current implementation of such processes coupled with the lack of alternate robotic technologies. A specific example, which is also the focus of this paper, is that of building a steel reinforced concrete structure, with varying curvature or cross-section. This process still remains rather manual and requires extensive support of customized form-work. In this paper, first we describe an alternate novel robotic fabrication process for building steel wire meshes which act as both reinforcement and formwork. The robotization of such a process is discussed with the use of a previously developed mobile robotic system. Based on the specifications derived from the process, design of a novel custom designed robotic end-effector, enabling this process, is detailed. Automation of the full robotic system comprising the mobile robotic system and the robotic end-effector is discussed from simulation to control. Through experimental evaluation of the robotic system, we demonstrate the ability to fully automate the construction of non-standard steel reinforced steel meshes of varying curvature and cell sizes.
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2 References
9 Citations
- Mawas Karam, Maboudi Mehdi, Gerke Markus (2022-05)
Automatic Geometric Inspection in Digital Fabrication - Mechtcherine Viktor, Mai (née Dressler) Inka, Empelmann Martin, Gehlen Christoph et al. (2021-09)
Digital Concrete Construction by Means of Additive Processes:
State of the Art and Research Needs - Mechtcherine Viktor, Buswell Richard, Kloft Harald, Bos Freek et al. (2021-02)
Integrating Reinforcement in Digital Fabrication with Concrete:
A Review and Classification Framework - Graser Konrad, Baur Marco, Apolinarska Aleksandra, Dörfler Kathrin et al. (2020-09)
DFAB House:
A Comprehensive Demonstrator of Digital Fabrication in Architecture - Hack Norman, Dörfler Kathrin, Walzer Alexander, Wangler Timothy et al. (2020-03)
Structural Stay-in-Place Formwork for Robotic In-Situ Fabrication of Non-Standard Concrete Structures:
A Real-Scale Architectural Demonstrator - Dörfler Kathrin, Hack Norman, Sandy Timothy, Giftthaler Markus et al. (2019-09)
Mobile Robotic Fabrication Beyond Factory Conditions:
Case Study Mesh Mould Wall of the DFAB HOUSE - Pfändler Patrick, Wangler Timothy, Mata-Falcón Jaime, Flatt Robert et al. (2018-09)
Potentials of Steel-Fibers for Mesh Mould Elements - Buchli Jonas, Giftthaler Markus, Kumar Nitish, Lussi Manuel et al. (2018-07)
Digital In-Situ Fabrication:
Challenges and Opportunities for Robotic In-Situ Fabrication in Architecture, Construction, and Beyond - Asprone Domenico, Menna Costantino, Bos Freek, Salet Theo et al. (2018-06)
Rethinking Reinforcement for Digital Fabrication with Concrete
BibTeX
@inproceedings{kuma_hack_dorf_walz.2017.DDaEAoaREEfNSCA,
author = "Nitish Kumar and Norman Peter Hack and Kathrin Dörfler and Alexander Nikolas Walzer and Gonzalo Javier Rey and Fabio Gramazio and Matthias Daniel Kohler and Jonas Buchli",
title = "Design, Development and Experimental Assessment of a Robotic End-Effector for Non-Standard Concrete Applications",
doi = "10.1109/icra.2017.7989201",
year = "2017",
pages = "1707--1713",
booktitle = "IEEE International Conference on Robotics and Automation",
editor = "Institute of Electrical and Electronics Engineers",
}
Formatted Citation
N. Kumar, “Design, Development and Experimental Assessment of a Robotic End-Effector for Non-Standard Concrete Applications”, in IEEE International Conference on Robotics and Automation, 2017, pp. 1707–1713. doi: 10.1109/icra.2017.7989201.
Kumar, Nitish, Norman Peter Hack, Kathrin Dörfler, Alexander Nikolas Walzer, Gonzalo Javier Rey, Fabio Gramazio, Matthias Daniel Kohler, and Jonas Buchli. “Design, Development and Experimental Assessment of a Robotic End-Effector for Non-Standard Concrete Applications”. In IEEE International Conference on Robotics and Automation, edited by Institute of Electrical and Electronics Engineers, 1707–13, 2017. https://doi.org/10.1109/icra.2017.7989201.