Digitally Fabricated Innovative Concrete Structures (2018-07)¶
Herrmann Eric, , Lindemann Hendrik, Wirth Franz,
Contribution - Proceedings of the 35th International Symposium on Automation and Robotics in Construction
Abstract
This paper presents the general aim of the research at the Institute of Structural Design (ITE) at Braunschweig University of Technology to bring digital design and digital fabrication together to develop resource efficient construction elements, manufacturing processes and building systems. Basis of research at ITE is the so-called Digital Building Fabrication Laboratory (DBFL). The paper gives an overview of machine design, the technical parameters and its basic abilities of subtractive and additive processes e.g. milling, printing and scanning. Based on the combined use of these digital fabrication processes and in cooperation with highperformance materials such as ultra-high performance concrete (UHPC), different research projects are being performed at the ITE. To explain the possibilities of the DBFL, the paper will present the results of two different – additive and subtractive - research projects to develop fabrication techniques for the building industry. The first project is dealing with the development of “digitally fabricated high precision Non-Waste-Wax-Formwork for innovative UHPC structures” and the second project is investigating “Additive manufacturing of free-form concrete elements using Shotcrete 3D Printing (SC3DP) technology”. Finally, the paper will highlight the possibilities of combining these technologies and transferring them to industry 4.0.
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10 Citations
- Kilic Ugur, Soliman Nancy, Omran Ahmed, Ozbulut Osman (2024-06)
Effects of Cellulose Nanofibrils on Rheological and Mechanical Properties of 3D Printable Cement Composites - Isaac Geoff, Nicholas Paul, Paul Gavin, Pietroni Nico et al. (2024-02)
Automated Shotcrete:
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Automated Shotcrete 3D Printing:
Printing Interruption for Extended Component Complexity - Baghdadi Abtin, Dörrie Robin, Kloft Harald (2021-08)
New Calculation Approach for Selecting and Orienting the Reinforcing Material for Robotic Concrete Manufacturing - Pessoa Ana Sofia, Guimarães Ana, Lucas Sandra, Simões Nuno (2021-02)
3D Printing in the Construction Industry:
A Systematic Review of the Thermal Performance in Buildings - Tao Yaxin, Rahul Attupurathu, Lesage Karel, Yuan Yong et al. (2021-02)
Stiffening Control of Cement-Based Materials Using Accelerators in In-Line Mixing Processes:
Possibilities and Challenges - Jenny Ercan, Lloret-Fritschi Ena, Gramazio Fabio, Kohler Matthias (2020-11)
Crafting Plaster through Continuous Mobile Robotic Fabrication On-Site
BibTeX
@inproceedings{herr_main_lind_wirt.2018.DFICS,
author = "Eric Herrmann and Jeldrik Mainka and Hendrik Lindemann and Franz Wirth and Harald Kloft",
title = "Digitally Fabricated Innovative Concrete Structures",
doi = "10.22260/isarc2018/0077",
year = "2018",
booktitle = "Proceedings of the 35th International Symposium on Automation and Robotics in Construction: The Future of Building Things",
editor = "Jochen Teizer and Markus König",
}
Formatted Citation
E. Herrmann, J. Mainka, H. Lindemann, F. Wirth and H. Kloft, “Digitally Fabricated Innovative Concrete Structures”, in Proceedings of the 35th International Symposium on Automation and Robotics in Construction: The Future of Building Things, 2018. doi: 10.22260/isarc2018/0077.
Herrmann, Eric, Jeldrik Mainka, Hendrik Lindemann, Franz Wirth, and Harald Kloft. “Digitally Fabricated Innovative Concrete Structures”. In Proceedings of the 35th International Symposium on Automation and Robotics in Construction: The Future of Building Things, edited by Jochen Teizer and Markus König, 2018. https://doi.org/10.22260/isarc2018/0077.