Skip to content

BIM-Enabled Collaborative-Robots 3D Concrete Printing to Construct MiC with Reinforcement (2023-11)

10.33430/v30n1thie-2022-0023

 Teng Fei,  Li Mingyang, Zhang Dong,  Li Heng,  Weng Yiwei
Journal Article - HKIE Transactions, Vol. 30, Iss. 1, pp. 106-115

Abstract

3D concrete printing (3DCP) has attracted much attention in recent years due to its advantage of advancing the conventional construction sector. However, the wide adoption of 3DCP in infrastructure and housing construction, i.e., Modular Integrated Construction, is hindered by the challenge of introducing reinforcement rebars in printed structures. This paper aims to tackle the abovementioned limitation by the application of a BIM-enabled collaborative-robots 3DCP system. In the proposed system, Building Information Modelling (BIM) and robot-arm 3D concrete printers are integrated to be a seamless information communication platform. The data of printed concrete structures and reinforcement rebars are extracted, separated, processed, and analysed on a BIM platform (i.e., Revit) by using a self-developed script. Then, these obtained data are sent to two robots to conduct different printing tasks, i.e., concurrent concrete structure printing and reinforcement rebar placement, respectively. The proposed system is successfully validated by a case study conducted in a virtual environment. This work demonstrates a seamless framework for concurrent print concrete structure and place reinforcement rebars to advance the automation of 3DCP by integrating BIM with robot-arm 3D printers.

20 References

  1. Arunothayan Arun, Nematollahi Behzad, Ranade Ravi, Bong Shin et al. (2020-10)
    Development of 3D Printable Ultra-High-Performance Fiber-Reinforced Concrete for Digital Construction
  2. Asprone Domenico, Auricchio Ferdinando, Menna Costantino, Mercuri Valentina (2018-03)
    3D Printing of Reinforced Concrete Elements:
    Technology and Design Approach
  3. Assaad Joseph, Yassin Abdallah, Sakka Fatima, Hamzeh Farook (2020-05)
    A Modular Approach for Steel Reinforcing of 3D Printed Concrete:
    Preliminary Study
  4. Baz Bilal, Aouad Georges, Leblond Philippe, Mansouri Omar et al. (2020-05)
    Mechanical Assessment of Concrete:
    Steel Bonding in 3D Printed Elements
  5. Bos Freek, Ahmed Zeeshan, Jutinov Evgeniy, Salet Theo (2017-11)
    Experimental Exploration of Metal-Cable as Reinforcement in 3D Printed Concrete
  6. Buswell Richard, Silva Wilson, Jones Scott, Dirrenberger Justin (2018-06)
    3D Printing Using Concrete-Extrusion:
    A Roadmap for Research
  7. Diggs-McGee Brandy, Kreiger Eric, Kreiger Megan, Case Michael (2019-04)
    Print Time vs. Elapsed Time:
    A Temporal Analysis of a Continuous Printing Operation for Additive Constructed Concrete
  8. Grasser Georg, Pammer Lorenz, Köll Harald, Werner E. et al. (2020-07)
    Complex Architecture in Printed Concrete:
    The Case of the Innsbruck University 350th Anniversary Pavilion COHESION
  9. Lu Bing, Weng Yiwei, Li Mingyang, Qian Ye et al. (2019-02)
    A Systematical Review of 3D Printable Cementitious Materials
  10. Ma Guowei, Li Zhijian, Wang Li, Bai Gang (2018-10)
    Micro-Cable-Reinforced Geopolymer Composite for Extrusion-Based 3D Printing
  11. Marchment Taylor, Sanjayan Jay (2019-10)
    Mesh Reinforcing Method for 3D Concrete Printing
  12. Mechtcherine Viktor, Grafe Jasmin, Nerella Venkatesh, Spaniol Erik et al. (2018-05)
    3D Printed Steel-Reinforcement for Digital Concrete Construction:
    Manufacture, Mechanical Properties and Bond Behavior
  13. Mechtcherine Viktor, Nerella Venkatesh, Will Frank, Näther Mathias et al. (2019-08)
    Large-Scale Digital Concrete Construction:
    CONPrint3D Concept for On-Site, Monolithic 3D Printing
  14. Sanjayan Jay, Nematollahi Behzad (2019-02)
    3D Concrete Printing for Construction Applications
  15. Schutter Geert, Lesage Karel, Mechtcherine Viktor, Nerella Venkatesh et al. (2018-08)
    Vision of 3D Printing with Concrete:
    Technical, Economic and Environmental Potentials
  16. Wangler Timothy, Lloret-Fritschi Ena, Reiter Lex, Hack Norman et al. (2016-10)
    Digital Concrete:
    Opportunities and Challenges
  17. Weng Yiwei, Li Mingyang, Ruan Shaoqin, Wong Teck et al. (2020-03)
    Comparative Economic, Environmental and Productivity-Assessment of a Concrete Bathroom Unit Fabricated Through 3D Printing and a Pre-Cast Approach
  18. Weng Yiwei, Mohamed Nisar, Lee Brian, Gan Nicole et al. (2021-02)
    Extracting BIM Information for Lattice Tool-Path-Planning in Digital Concrete Printing with Developed Dynamo Script:
    A Case Study
  19. Zhu Binrong, Nematollahi Behzad, Pan Jinlong, Zhang Yang et al. (2021-04)
    3D Concrete Printing of Permanent Formwork for Concrete Column Construction
  20. Zhu Binrong, Pan Jinlong, Zhou Zhenxin, Cai Jingming (2021-04)
    Mechanical Properties of Engineered Cementitious Composites Beams Fabricated by Extrusion-Based 3D

13 Citations

  1. Teng Fei, Yang Minxin, Yu Jie, Weng Yiwei et al. (2025-10)
    Multi-Material 3D Concrete Printing:
    Automated Hybrid Reinforcements Using Textile and Strain-Hardening Cementitious Composites
  2. Chen Baixi, Yang Lei, Jiang Sheng (2025-09)
    Stochastic Analysis of 3D Concrete Printing Process with Curvature and Inclination by Explainable Data-Driven Modelling
  3. Sari Mustika, Berawi Mohammed, Taswin William, Saroji Gunawan et al. (2025-09)
    Work Breakdown Structure and Construction Process Framework for a Hybrid 3D-Printed Modular Building
  4. Chen Baixi, Qian Xiaoping (2025-07)
    Explainable Data-Driven Analysis of Uncertainty Propagation in 3D Concrete Printing via Adaptive Polynomial Chaos Expansion
  5. Rojas Jorge, Hasanzadeh Sognad (2025-05)
    An Integrated BIM Planning Workflow for 3D Concrete Printing Projects
  6. Teng Fei, Xu Fengming, Yang Minxin, Yu Jie et al. (2025-02)
    Development of Sustainable Strain-Hardening Cementitious Composites Containing Diatomite for 3D Printing
  7. Chen Baixi, Qian Xiaoping (2024-09)
    Data-Driven Reliability-Oriented Buildability-Analysis of 3D Concrete Printed Curved Wall
  8. Liu Zhenbang, Li Mingyang, Wang Xiangyu, Wang Sizhe et al. (2024-07)
    Axial Performances of the Steel-Rebar-Reinforced Column Confined by the Steel-Cable-Reinforced 3D Concrete Printing Permanent Formwork
  9. Teng Fei, Ye Junhong, Yu Jie, Li Heng et al. (2024-07)
    Development of Strain-Hardening Cementitious Composites (SHCC) As Bonding Materials to Enhance Inter-Layer and Flexural Performance of 3D Printed Concrete
  10. Ye Junhong, Zhuang Zicheng, Teng Fei, Yu Jie et al. (2024-07)
    Comparative Environmental-Assessment of 3D Concrete Printing with Engineered Cementitious Composites
  11. Zhuang Zicheng, Xu Fengming, Ye Junhong, Hu Nan et al. (2024-06)
    A Comprehensive Review of Sustainable Materials and Tool-Path-Optimization in 3D Concrete Printing
  12. Du Song, Teng Fei, Zhuang Zicheng, Zhang Dong et al. (2024-04)
    A BIM-Enabled Robot-Control System for Automated Integration Between Rebar-Reinforcement and 3D Concrete Printing
  13. Du Song, Teng Fei, Zhuang Zicheng, Zhang Dong et al. (2024-03)
    A BIM-Enabled Robot-Control System for Automated Integration Between Rebar-Reinforcement and 3D Concrete Printing

BibTeX
@article{teng_li_zhan_li.2023.BECR3CPtCMwR,
  author            = "Fei Teng and Mingyang Li and Dong Zhang and Heng Li and Yiwei Weng",
  title             = "BIM-Enabled Collaborative-Robots 3D Concrete Printing to Construct MiC with Reinforcement",
  doi               = "10.33430/v30n1thie-2022-0023",
  year              = "2023",
  journal           = "HKIE Transactions",
  volume            = "30",
  number            = "1",
  pages             = "106--115",
}
Formatted Citation

F. Teng, M. Li, D. Zhang, H. Li and Y. Weng, “BIM-Enabled Collaborative-Robots 3D Concrete Printing to Construct MiC with Reinforcement”, HKIE Transactions, vol. 30, no. 1, pp. 106–115, 2023, doi: 10.33430/v30n1thie-2022-0023.

Teng, Fei, Mingyang Li, Dong Zhang, Heng Li, and Yiwei Weng. “BIM-Enabled Collaborative-Robots 3D Concrete Printing to Construct MiC with Reinforcement”. HKIE Transactions 30, no. 1 (2023): 106–15. https://doi.org/10.33430/v30n1thie-2022-0023.