Prototypical Realization of Fully Automated 3D Printing of Reinforced Concrete Using AMoRC Method (2024-09)¶
10.24355/dbbs.084-202408140640-0
, , Olesch Mirco, Mäde Konrad,
Contribution - Supplementary Proceedings of the 4th RILEM International Conference on Concrete and Digital Fabrication
Abstract
This paper presents the prototypical implementation of a novel 3D printing process for reinforced concrete structures called Additive Manufacturing of Reinforced Concrete (AMoRC), by showcasing the production of a half-meter-high S-shaped reinforced concrete wall within the laboratories at Institute of Structural Concrete at RWTH Aachen using two robotic systems. The process consists of a continuous concrete extrusion process and an intermittent arc stud welding process, both carried out by a robotic arm respectively. To avoid collision in the first step, the entire printing process is carried out by the robot for concrete printing and the robot for reinforcement welding in alternation, whereby iterative steps are required to create the entire reinforced concrete demonstrator. Segmented rebars of limited length were welded into a spatial reinforcement mesh and then enclosed by the 3D-printed concrete using an innovative fork-shaped printing head with two nozzles, spaced at an adjustable distance to accommodate varying reinforcement diameters. A specialized clamping mechanism was developed for the welding pistol in the welding process at the Welding and Joining Institute at RWTH. The pursuit of fully automated 3D-printing of reinforced concrete involves the following core technical procedures: (1) 3D concrete printing (3DCP) with programmed robot paths, (2) robotic charging of reinforcement studs, (3) robotic welding of the vertical reinforcement, (4) robotic laying of the longitudinal reinforcement, (5) robotic welding of the longitudinal reinforcement.
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5 References
- Claßen Martin, Claßen Johannes, Sharma Rahul (2020-08)
Conception of a Real World 3D Printing Method for Reinforced Concrete (AMoRC) - Claßen Martin, Ungermann Jan, Sharma Rahul (2020-05)
Additive Manufacturing of Reinforced Concrete:
Development of a 3D Printing Technology for Cementitious Composites with Metallic Reinforcement - Mechtcherine Viktor, Buswell Richard, Kloft Harald, Bos Freek et al. (2021-02)
Integrating Reinforcement in Digital Fabrication with Concrete:
A Review and Classification Framework - Mechtcherine Viktor, Nerella Venkatesh (2018-04)
Incorporating Reinforcement in 3D-Printing with Concrete - Zhang Sisi, Kalus Matthias, Engel Sven, Hegger Josef et al. (2023-06)
Development of an Innovative 3D Printing Process for Reinforced Concrete:
AMoRC Method
0 Citations
BibTeX
@inproceedings{zhan_cla_oles_made.2024.PRoFA3PoRCUAM,
author = "Sisi Zhang and Martin Claßen and Mirco Olesch and Konrad Mäde and Rahul Sharma",
title = "Prototypical Realization of Fully Automated 3D Printing of Reinforced Concrete Using AMoRC Method",
doi = "10.24355/dbbs.084-202408140640-0",
year = "2024",
booktitle = "Supplementary Proceedings of the 4th RILEM International Conference on Concrete and Digital Fabrication",
editor = "Dirk Lowke and Niklas Freund and David Böhler and Friedrich Herding",
}
Formatted Citation
S. Zhang, M. Claßen, M. Olesch, K. Mäde and R. Sharma, “Prototypical Realization of Fully Automated 3D Printing of Reinforced Concrete Using AMoRC Method”, in Supplementary Proceedings of the 4th RILEM International Conference on Concrete and Digital Fabrication, 2024. doi: 10.24355/dbbs.084-202408140640-0.
Zhang, Sisi, Martin Claßen, Mirco Olesch, Konrad Mäde, and Rahul Sharma. “Prototypical Realization of Fully Automated 3D Printing of Reinforced Concrete Using AMoRC Method”. In Supplementary Proceedings of the 4th RILEM International Conference on Concrete and Digital Fabrication, edited by Dirk Lowke, Niklas Freund, David Böhler, and Friedrich Herding, 2024. https://doi.org/10.24355/dbbs.084-202408140640-0.