Reinforcement-Strategies for 3D Concrete Printing (2020-09)¶
, , , Herrmann Eric,
Journal Article - Civil Engineering Design, Vol. 2, Iss. 4, pp. 131-139
Abstract
The ingenious bridge, roof, and shell structures of the last century were designed from the understanding of the congenial interaction of the two materials concrete and steel. Nowadays, reinforced concrete is the most widely used material in con- struction. The use of system formwork and easy-to-install reinforcement support structures that are optimized in terms of labor costs, but often have inefficient use of material. In this context, Stefan Polónyi has repeatedly criticized the engineers' lost understanding of the interaction of concrete and reinforcement. With Additive Manufacturing, an innovative digital manufacturing technology is now available that allows new freedom in concrete design with a resource-efficient use of materials at the same time. With regard to practical application, the integration of reinforcement represents a central challenge in 3D-concrete-printing. The authors see here the future chance of a force-flow controlled reinforcement layout. The paper shows new strategies for the combined Additive Manufacturing of concrete and reinforcement and presents first 3D-printed reinforced concrete elements.
¶
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3D Printing Facades:
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A Review of 3D Concrete Printing:
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Reinforcement Lattices for 3DCP:
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A Review of Large-Scale 3DCP:
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Generative Structural Design:
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Core Winding:
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Pre-Installed Reinforcement for 3D Concrete Printing - Hojati Maryam, Memari Ali, Zahabi Mehrzad, Wu Zhengyu et al. (2022-06)
Barbed-Wire Reinforcement for 3D Concrete Printing - Xiao Yinan, Hack Norman, Kloft Harald (2022-06)
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Additive Manufacturing Using Mobile Robots:
Opportunities and Challenges for Building Construction - Gebhard Lukas, Burger Joris, Mata-Falcón Jaime, Lloret-Fritschi Ena et al. (2022-03)
Towards Efficient Concrete Structures with Ultra-Thin 3D Printed Formwork:
Exploring Reinforcement-Strategies and Optimization - Nguyen Ngoc, Bui Tan-Trung, Bui Quoc-Bao (2022-02)
Fiber-Reinforced Concrete for Slabs without Steel-Rebar-Reinforcement:
Assessing the Feasibility for 3D Printed Individual Houses - Heidarnezhad Fatemeh, Zhang Qian (2022-01)
Shotcrete-Based 3D Concrete Printing:
State of Art, Challenges, and Opportunities - Vasilić Ksenija, Hack Norman, Kloft Harald, Lowke Dirk et al. (2022-01)
Digitale Fertigung im Betonbau - Freund Niklas, Lowke Dirk (2021-11)
Inter-Layer Reinforcement in Shotcrete 3D Printing - Gantner Stefan, Rothe Tom, Hühne Christian, Hack Norman (2021-11)
Reinforcement-Strategies for Additive Manufacturing in Construction Based on Dynamic Fiber Winding:
Concepts and Initial Case Studies - Ivaniuk Egor, Müller Steffen, Neef Tobias, Mechtcherine Viktor (2021-11)
Strategies for Integrating Reinforcement Into 3D Concrete Printing at the TU Dresden - Wolf Alexander, Rosendahl Philipp, Knaack Ulrich (2021-10)
Additive Manufacturing of Clay and Ceramic Building Components - Mai (née Dressler) Inka, Brohmann Leon, Freund Niklas, Gantner Stefan et al. (2021-10)
Large Particle 3D Concrete Printing:
A Green and Viable Solution - 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 - Baghdadi Abtin, Dörrie Robin, Kloft Harald (2021-08)
New Calculation Approach for Selecting and Orienting the Reinforcing Material for Robotic Concrete Manufacturing - Bedarf Patrick, Dutto Alessandro, Zanini Michele, Dillenburger Benjamin (2021-08)
Foam 3D Printing for Construction:
A Review of Applications, Materials, and Processes - Lowke Dirk, Vandenberg Aileen, Pierre Alexandre, Thomas Amaury et al. (2021-07)
Injection 3D Concrete Printing in a Carrier Liquid:
Underlying Physics and Applications to Lightweight Space Frame Structures - García-Alvarado Rodrigo, Moroni-Orellana Ginnia, Banda-Pérez Pablo (2021-06)
Architectural Evaluation of 3D Printed Buildings - Kloft Harald, Gehlen Christoph, Dörfler Kathrin, Hack Norman et al. (2021-06)
TRR 277:
Additive Manufacturing in Construction - Hack Norman, Bahar Mohammad, Hühne Christian, Lopez William et al. (2021-06)
Development of a Robot-Based Multi-Directional Dynamic Fiber Winding Process for Additive Manufacturing Using Shotcrete 3D Printing - Gebhard Lukas, Mata-Falcón Jaime, Anton Ana-Maria, Dillenburger Benjamin et al. (2021-04)
Structural Behavior of 3D Printed Concrete Beams with Various Reinforcement-Strategies - Mechtcherine Viktor, Buswell Richard, Kloft Harald, Bos Freek et al. (2021-02)
Integrating Reinforcement in Digital Fabrication with Concrete:
A Review and Classification Framework - Kloft Harald, Gehlen Christoph, Dörfler Kathrin, Hack Norman et al. (2021-01)
TRR 277:
Additive Manufacturing in Construction
BibTeX
@article{klof_empe_hack_herr.2020.RSf3CP,
author = "Harald Kloft and Martin Empelmann and Norman Peter Hack and Eric Herrmann and Dirk Lowke",
title = "Reinforcement-Strategies for 3D Concrete Printing",
doi = "10.1002/cend.202000022",
year = "2020",
journal = "Civil Engineering Design",
volume = "2",
number = "4",
pages = "131--139",
}
Formatted Citation
H. Kloft, M. Empelmann, N. P. Hack, E. Herrmann and D. Lowke, “Reinforcement-Strategies for 3D Concrete Printing”, Civil Engineering Design, vol. 2, no. 4, pp. 131–139, 2020, doi: 10.1002/cend.202000022.
Kloft, Harald, Martin Empelmann, Norman Peter Hack, Eric Herrmann, and Dirk Lowke. “Reinforcement-Strategies for 3D Concrete Printing”. Civil Engineering Design 2, no. 4 (2020): 131–39. https://doi.org/10.1002/cend.202000022.