Skip to content

Parametric Analysis of Design and Operational Parameters in 3D Concrete Printing of Wall Elements (2025-10)

10.1016/j.jobe.2025.114494

 Kul Anil,  Kocaer Öznur
Journal Article - Journal of Building Engineering, No. 114494

Abstract

The transformative potential of 3D concrete printing (3DCP) in construction is increasingly evident, promising enhanced precision, reduced waste, greater design flexibility, and improved cost and energy efficiency. However, challenges remain in process optimization, material formulation, and industrial scalability. Integrating advanced numerical modeling with experimental validation is essential for accurately predicting structural behavior, minimizing defects, and developing robust printing strategies. This study employed validated numerical models to analyze failure mechanisms and structuration performance of 3D-printed wall elements across various geometric configurations, and printing parameters. Validation was performed using data from literature and laboratory experiments. A parametric study examined key factors like wall geometry, layer width, and operational parameters affecting structuration (i.e., buildability) performance. Results highlighted the significant influence of pre-design decisions, with overall structural design and layer dimensions proving critical to stability. Specifically, low-aspect-ratio walls increased maximum printable height by up to 330%. In addition, layer aspect ratio improved performance by up to 145% in the base configuration, while printing speed accounted for only about a 30% variation in height, underscoring its secondary role. By systematically exploring design and process interactions, the research identifies optimal configurations that enhance structuration while minimizing instability risks. These insights contribute to the broader adoption of 3DCP by addressing potential issues during the design phase. This work underscores the importance of tailored pre-design strategies in optimizing 3DCP for sustainable, scalable, and efficient construction practices.

27 References

  1. Alhumayani Hashem, Gomaa Mohamed, Soebarto Veronica, Jabi Wassim (2020-06)
    Environmental Assessment of Large-Scale 3D Printing in Construction:
    A Comparative Study between Cob and Concrete
  2. Buswell Richard, Silva Wilson, Jones Scott, Dirrenberger Justin (2018-06)
    3D Printing Using Concrete-Extrusion:
    A Roadmap for Research
  3. Comminal Raphaël, Silva Wilson, Andersen Thomas, Stang Henrik et al. (2020-10)
    Modelling of 3D Concrete Printing Based on Computational Fluid Dynamics
  4. Han Yilong, Yang Zhihan, Ding Tao, Xiao Jianzhuang (2020-08)
    Environmental and Economic Assessment on 3D Printed Buildings with Recycled Concrete
  5. Jayathilakage Roshan, Rajeev Pathmanathan, Sanjayan Jay (2020-01)
    Yield-Stress-Criteria to Assess the Buildability of 3D Concrete Printing
  6. Joh Changbin, Lee Jungwoo, Bui The, Park Jihun et al. (2020-11)
    Buildability and Mechanical Properties of 3D Printed Concrete
  7. Kazemian Ali, Yuan Xiao, Davtalab Omid, Khoshnevis Behrokh (2019-01)
    Computer-Vision for Real-Time Extrusion-Quality-Monitoring and Control in Robotic Construction
  8. Khan Shoukat, Koç Muammer (2023-03)
    Buildability-Analysis of 3D Concrete Printing Process:
    A Parametric Study Using Design of Experiment-Approach
  9. Kruger Jacques, Zeranka Stephan, Zijl Gideon (2019-07)
    3D Concrete Printing:
    A Lower-Bound Analytical Model for Buildability-Performance-Quantification
  10. Kul Anil, Kocaer Öznur, Aldemir Alper, Yıldırım Gürkan et al. (2024-12)
    3D Printable One-Part Alkali-Activated Mortar Derived from Brick-Masonry-Wastes
  11. Mohammad Malek, Masad Eyad, Ghamdi Sami (2020-12)
    3D Concrete Printing Sustainability:
    A Comparative Life Cycle Assessment of Four Construction Method Scenarios
  12. Paolini Alexander, Kollmannsberger Stefan, Rank Ernst (2019-10)
    Additive Manufacturing in Construction:
    A Review on Processes, Applications, and Digital Planning Methods
  13. Roussel Nicolas, Bessaies-Bey Hela, Kawashima Shiho, Marchon Delphine et al. (2019-08)
    Recent Advances on Yield-Stress and Elasticity of Fresh Cement-Based Materials
  14. Sayegh Sameh, Romdhane Lotfi, Manjikian Solair (2022-03)
    A Critical Review of 3D Printing in Construction:
    Benefits, Challenges, and Risks
  15. Schuldt Steven, Jagoda Jeneé, Hoisington Andrew, Delorit Justin (2021-03)
    A Systematic Review and Analysis of the Viability of 3D Printed Construction in Remote Environments
  16. Schutter Geert, Lesage Karel, Mechtcherine Viktor, Nerella Venkatesh et al. (2018-08)
    Vision of 3D Printing with Concrete:
    Technical, Economic and Environmental Potentials
  17. Shakor Pshtiwan, Nejadi Shami, Paul Gavin, Malek Sardar (2019-01)
    Review of Emerging Additive Manufacturing Technologies in 3D Printing of Cementitious Materials in the Construction Industry
  18. Silveira Júnior Jairon, Moura Cerqueira Kevin, Moura Ruan, Matos Paulo et al. (2024-04)
    Influence of Time-Gap on the Buildability of Cement Mixtures Designed for 3D Printing
  19. Souza Marcelo, Ferreira Igor, Moraes Elisângela, Senff Luciano et al. (2020-09)
    3D Printed Concrete for Large-Scale Buildings:
    An Overview of Rheology, Printing Parameters, Chemical Admixtures, Reinforcements, and Economic and Environmental Prospects
  20. Suiker Akke (2018-01)
    Mechanical Performance of Wall Structures in 3D Printing Processes:
    Theory, Design Tools and Experiments
  21. Suiker Akke, Wolfs Robert, Lucas Sandra, Salet Theo (2020-06)
    Elastic Buckling and Plastic Collapse During 3D Concrete Printing
  22. Suryanto Benny, Higgins J., Aitken M., Tambusay Asdam et al. (2023-10)
    Developments in Portland Cement/GGBS Binders for 3D Printing Applications:
    Material-Calibration and Structural Testing
  23. Vantyghem Gieljan, Ooms Ticho, Corte Wouter (2020-11)
    VoxelPrint:
    A Grasshopper Plug-In for Voxel-Based Numerical Simulation of Concrete Printing
  24. Wolfs Robert, Bos Freek, Salet Theo (2018-02)
    Early-Age Mechanical Behaviour of 3D Printed Concrete:
    Numerical Modelling and Experimental Testing
  25. Wolfs Robert, Suiker Akke (2019-06)
    Structural Failure During Extrusion-Based 3D Printing Processes
  26. Xiao Jianzhuang, Ji Guangchao, Zhang Yamei, Ma Guowei et al. (2021-06)
    Large-Scale 3D Printing Concrete Technology:
    Current Status and Future Opportunities
  27. Zahabizadeh Behzad, Pereira João, Gonçalves Claúdia, Pereira Eduardo et al. (2021-03)
    Influence of the Printing-Direction and Age on the Mechanical Properties of 3D Printed Concrete

0 Citations

BibTeX
@article{kul_koca.2025.PAoDaOPi3CPoWE,
  author            = "Anil Kul and Öznur Kocaer",
  title             = "Parametric Analysis of Design and Operational Parameters in 3D Concrete Printing of Wall Elements",
  doi               = "10.1016/j.jobe.2025.114494",
  year              = "2025",
  journal           = "Journal of Building Engineering",
  pages             = "114494",
}
Formatted Citation

A. Kul and Ö. Kocaer, “Parametric Analysis of Design and Operational Parameters in 3D Concrete Printing of Wall Elements”, Journal of Building Engineering, p. 114494, 2025, doi: 10.1016/j.jobe.2025.114494.

Kul, Anil, and Öznur Kocaer. “Parametric Analysis of Design and Operational Parameters in 3D Concrete Printing of Wall Elements”. Journal of Building Engineering, 2025, 114494. https://doi.org/10.1016/j.jobe.2025.114494.