Skip to content

3D Concrete Printing of Self-Supported Filaments via Entrained Cables (2024-07)

Constructing Formwork-Free Spanning Structures

10.1080/17452759.2024.2379998

 Baghi Ali,  Aminpour Nima,  Memari Ali,  Bilén Sven,  Nazarian Shadi,  Duarte José
Journal Article - Virtual and Physical Prototyping, Vol. 19, Iss. 1

Abstract

3D concrete printing (3DCP) enhances design flexibility, reduces construction costs and lowers environmental impact. Traditionally used for wall fabrication, this study introduces a system for printing self-supporting spanning structures using reinforced concrete filaments with tensioned cables, eliminating the need for formwork. The research involved conceptual design and prototyping to integrate cables into the printing process, as well as structural testing of a small-scale model consisting of a reinforced filament. Numerical analysis using the concrete damage plasticity model (CDP) and the traction-separation model simulated the filament's non-linear behaviour and damage. Compared with experimental data, numerical analysis showed good accuracy. Reinforced filaments exhibited a significant increase in flexural strength, from 1.2 kgf·m to 5.0 kgf·m, compared to non-reinforced filaments. Results confirm the feasibility of the proposed method, though challenges remain in ensuring long-term functionality and scalability. Improving the bond between concrete and cables, refining printing parameters and exploring alternative materials are key aspects. While this study focuses on reinforced filaments as proof of concept, future work will address multifilament and multilayer elements like slabs.

22 References

  1. Abdalla Hadeer, Fattah Kazi, Abdallah Mohamed, Tamimi Adil (2021-10)
    Environmental Footprint and Economics of a Full-Scale 3D Printed House
  2. Ahmed Zeeshan, Biffi Alessia, Hass Lauri, Bos Freek et al. (2020-07)
    3D Concrete Printing:
    Free-Form Geometries with Improved Ductility and Strength
  3. Asprone Domenico, Auricchio Ferdinando, Menna Costantino, Mercuri Valentina (2018-03)
    3D Printing of Reinforced Concrete Elements:
    Technology and Design Approach
  4. Ayres Phil, Silva Wilson, Nicholas Paul, Andersen Thomas et al. (2018-09)
    SCRIM:
    Sparse Concrete Reinforcement in Meshworks
  5. Bhooshan Shajay, Bhooshan Vishu, Dell’Endice Alessandro, Chu Jianfei et al. (2022-06)
    The Striatus Bridge
  6. Bos Freek, Ahmed Zeeshan, Jutinov Evgeniy, Salet Theo (2017-11)
    Experimental Exploration of Metal-Cable as Reinforcement in 3D Printed Concrete
  7. Bos Freek, Wolfs Robert, Ahmed Zeeshan, Salet Theo (2016-08)
    Additive Manufacturing of Concrete in Construction:
    Potentials and Challenges of 3D Concrete Printing
  8. Duarte Gonçalo, Brown Nathan, Memari Ali, Duarte José (2021-07)
    Learning from Historical Structures under Compression for Concrete 3D Printing Construction
  9. Freund Niklas, Mai (née Dressler) Inka, Lowke Dirk (2020-07)
    Studying the Bond Properties of Vertical Integrated Short Reinforcement in the Shotcrete 3D Printing Process
  10. 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
  11. 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
  12. Hass Lauri, Bos Freek (2020-07)
    Bending and Pull-Out Tests on a Novel Screw Type Reinforcement for Extrusion-Based 3D Printed Concrete
  13. Kloft Harald, Empelmann Martin, Hack Norman, Herrmann Eric et al. (2020-09)
    Reinforcement-Strategies for 3D Concrete Printing
  14. Marchment Taylor, Sanjayan Jay (2019-10)
    Mesh Reinforcing Method for 3D Concrete Printing
  15. Mechtcherine Viktor, Michel Albert, Liebscher Marco, Schmeier Tobias (2020-06)
    Extrusion-Based Additive Manufacturing with Carbon Reinforced Concrete:
    Concept and Feasibility Study
  16. Mechtcherine Viktor, Nerella Venkatesh (2018-04)
    Incorporating Reinforcement in 3D-Printing with Concrete
  17. Mohammad Malek, Masad Eyad, Ghamdi Sami (2020-12)
    3D Concrete Printing Sustainability:
    A Comparative Life Cycle Assessment of Four Construction Method Scenarios
  18. Nematollahi Behzad, Xia Ming, Sanjayan Jay (2017-07)
    Current Progress of 3D Concrete Printing Technologies
  19. Paul Suvash, Zijl Gideon, Tan Ming, Gibson Ian (2018-05)
    A Review of 3D Concrete Printing Systems and Materials Properties:
    Current Status and Future Research Prospects
  20. Salet Theo, Ahmed Zeeshan, Bos Freek, Laagland Hans (2018-05)
    Design of a 3D Printed Concrete Bridge by Testing
  21. Taha Nizar, Walzer Alexander, Ruangjun Jetana, Bürgin Theophil et al. (2019-09)
    Robotic AeroCrete:
    A Novel Robotic Spraying and Surface Treatment Technology for the Production of Slender Reinforced Concrete Elements
  22. Wu Zhengyu, Memari Ali, Duarte José (2022-01)
    State of the Art Review of Reinforcement-Strategies and Technologies for 3D Printing of Concrete

1 Citations

  1. Brandão Filipe, Figueiredo Bruno, Cruz Paulo (2025-06)
    Winding Fiber Thread for 3D Concrete Robotic Printing

BibTeX
@article{bagh_amin_mema_bile.2024.3CPoSSFvEC,
  author            = "Ali Baghi and Nima Aminpour and Ali M. Memari and Sven G. Bilén and Shadi Nazarian and José Pinto Duarte",
  title             = "3D Concrete Printing of Self-Supported Filaments via Entrained Cables: Constructing Formwork-Free Spanning Structures",
  doi               = "10.1080/17452759.2024.2379998",
  year              = "2024",
  journal           = "Virtual and Physical Prototyping",
  volume            = "19",
  number            = "1",
}
Formatted Citation

A. Baghi, N. Aminpour, A. M. Memari, S. G. Bilén, S. Nazarian and J. P. Duarte, “3D Concrete Printing of Self-Supported Filaments via Entrained Cables: Constructing Formwork-Free Spanning Structures”, Virtual and Physical Prototyping, vol. 19, no. 1, 2024, doi: 10.1080/17452759.2024.2379998.

Baghi, Ali, Nima Aminpour, Ali M. Memari, Sven G. Bilén, Shadi Nazarian, and José Pinto Duarte. “3D Concrete Printing of Self-Supported Filaments via Entrained Cables: Constructing Formwork-Free Spanning Structures”. Virtual and Physical Prototyping 19, no. 1 (2024). https://doi.org/10.1080/17452759.2024.2379998.