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The Effectiveness of 3D Concrete Printing Technology in Architectural Design (2025-08)

Different Corner-Wall Combinations in 3D Printed Elements and Geometric Form Configurations in Residential Buildings

10.1080/00038628.2025.2543003

İlerisoy Zeynep,  Takva Çağatay,  Top Semahat,  Gökgöz Berru, Gebel Şeyma,  İlcan Hüseyin,  Şahmaran Mustafa
Journal Article - Architectural Science Review, pp. 1-17

Abstract

3D Concrete Printing (3DCP) is an increasingly popular modern technology in the construction industry. There is a research gap in the basic geometric form decisions of 3DCP in building production about corner-wall combinations and the potential of chamfered corner turns. In this study, it is aimed to provide solutions to this research gap by performing digital fabrication of different architectural design configurations. Additionally, different chamfered turning performances were investigated in relation to the turning difficulties of the nozzle in corner-wall combinations. In this context, a lab-scale 3D printer was used with a cement-based material for the synthesis of prototypes. As a result of 3DCP, comparative analyses were conducted with building evaluation parameters. The obtained results revealed that in corner-wall combinations, chamfered space (r = 5 cm) was the most advantageous in terms of buildability and mass producibility. In geometric form configurations, the chamfered octagon showed optimum behaviour. In terms of buildability, a chamfered octagon offers a 4.2% advantage over a standard octagon. From a cost perspective, chamfered octagon provides a 20% advantage over chamfered square and 46.6% advantage over octagon. In terms of mass producibility, the chamfered octagon is on par with the chamfered hexagon and outperformed the chamfered square by 16.6%.

37 References

  1. Alabbasi Mohammad, Agkathidis Asterios, Chen Hanmei (2023-01)
    Robotic 3D Printing of Concrete Building Components for Residential Buildings in Saudi Arabia
  2. Ali Md., Issayev Gani, Shehab Essam, Sarfraz Shoaib (2022-02)
    A Critical Review of 3D Printing and Digital Manufacturing in Construction Engineering
  3. An Dong, Zhang Yixia, Yang Chunhui (2023-11)
    Numerical Modelling of 3D Concrete Printing:
    Material-Models, Boundary-Conditions and Failure-Identification
  4. Anton Ana-Maria, Reiter Lex, Wangler Timothy, Frangez Valens et al. (2020-12)
    A 3D Concrete Printing Prefabrication Platform for Bespoke Columns
  5. Asaf Ofer, Bentur Arnon, Larianovsky Pavel, Sprecher Aaron (2023-10)
    From Soil to Printed Structures:
    A Systematic Approach to Designing Clay-Based Materials for 3D Printing in Construction and Architecture
  6. Batikha Mustafa, Jotangia Rahul, Baaj Mohamad, Mousleh Ibrahim (2021-12)
    3D Concrete Printing for Sustainable and Economical Construction:
    A Comparative Study
  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. Delavar Mohammad, Chen H., Sideris Petros (2024-01)
    Analysis and Design of 3D Printed Reinforced Concrete Walls Under In-Plane Quasi-Static Loading
  9. Duarte Gonçalo, Brown Nathan, Memari Ali, Duarte José (2021-07)
    Learning from Historical Structures under Compression for Concrete 3D Printing Construction
  10. Giridhar Greeshma, Prem Prabhat, Kumar Shankar (2023-01)
    Development of Concrete Mixes for 3D Printing Using Simple Tools and Techniques
  11. Gosselin Clément, Duballet Romain, Roux Philippe, Gaudillière-Jami Nadja et al. (2016-03)
    Large-Scale 3D Printing of Ultra-High-Performance Concrete:
    A New Processing Route for Architects and Builders
  12. Gündüz Gamze, Özkar Mine (2024-02)
    A Process-Based Framework for Adaptable Modules in Robotic Clay 3D Printing
  13. Hassan Habibelrahman, Rodriguez-Ubinas Edwin, Tamimi Adil, Trepci Esra et al. (2024-04)
    Towards Innovative and Sustainable Buildings:
    A Comprehensive Review of 3D Printing in Construction
  14. Huang Shuyi, Xu Weiguo, Li Yuqian (2022-04)
    The Impacts of Fabrication Systems on 3D Concrete Printing Building Forms
  15. İlcan Hüseyin, Külak Adnan, Şahmaran Mustafa (2024-03)
    3D Printable Construction and Demolition Waste-Based Geopolymer:
    Investigating the Effects of Additives on Engineering Properties
  16. İlcan Hüseyin, Şahin Oğuzhan, Kul Anil, Yıldırım Gürkan et al. (2022-03)
    Rheological Properties and Compressive Strength of Construction and Demolition Waste-Based Geopolymer Mortars for 3D Printing
  17. Jipa Mihail-Andrei, Bernhard Mathias, Meibodi Mania, Dillenburger Benjamin (2016-11)
    3D Printed Stay-in-Place Formwork for Topologically Optimized Concrete Slabs
  18. Jo Jun, Jo Byung, Cho Woohyun, Kim Jung-Hoon (2020-03)
    Development of a 3D Printer for Concrete Structures:
    Laboratory Testing of Cementitious Materials
  19. Khan Mohammad, Dani Aflah, Lim James, Roy Krishanu (2024-04)
    Appraising the Feasibility of 3D Printing Construction in New Zealand Housing
  20. Khan Shoukat, İlcan Hüseyin, Aminipour Ehsan, Şahin Oğuzhan et al. (2023-07)
    Buildability-Analysis on Effect of Structural Design in 3D Concrete Printing:
    An Experimental and Numerical Study
  21. Khan Shoukat, İlcan Hüseyin, Imram Ramsha, Aminipour Ehsan et al. (2024-01)
    The Impact of Nozzle-Diameter and Printing Speed on Geopolymer-Based 3D Printed Concrete Structures:
    Numerical Modeling and Experimental Validation
  22. Khan Shoukat, Jassim Muhammad, İlcan Hüseyin, Şahin Oğuzhan et al. (2023-04)
    3D Printing of Circular Materials:
    Comparative Environmental Analysis of Materials and Construction Techniques
  23. Khan Shoukat, Koç Muammer (2023-03)
    Buildability-Analysis of 3D Concrete Printing Process:
    A Parametric Study Using Design of Experiment-Approach
  24. Martens Pascal, Mathot Maarten, Bos Freek, Coenders Jeroen (2017-06)
    Optimizing 3D Printed Concrete Structures Using Topology Optimization
  25. Miri Zahra, Baaj Hassan, Polak Maria (2025-03)
    3D-Printed Concrete Bridges:
    Material, Design, Construction, and Reinforcement
  26. Moghayedi Alireza, Mahachi Jeffrey, Lediga Refilwe, Mosiea Tshepang et al. (2024-03)
    Revolutionizing Affordable Housing in Africa:
    A Comprehensive Technical and Sustainability Study of 3D Printing Technology
  27. Mogra Mihir, Asaf Ofer, Sprecher Aaron, Amir Oded (2023-08)
    Design-Optimization of 3D Printed Concrete Elements Considering Buildability
  28. Moini Mohamadreza, Olek Jan, Youngblood Jeffrey, Magee Bryan et al. (2018-08)
    Additive Manufacturing and Performance of Architectured Cement-Based Materials
  29. Nguyen Vuong, Li Shuai, Liu Junli, Nguyen Kien et al. (2022-11)
    Modelling of 3D Concrete Printing Process:
    A Perspective on Material and Structural Simulations
  30. Ooms Ticho, Vantyghem Gieljan, Coile Ruben, Corte Wouter (2020-12)
    A Parametric Modelling-Strategy for the Numerical Simulation of 3D Concrete Printing with Complex Geometries
  31. Rubeis Tullio, Ciccozzi Annamaria, Giusti Letizia, Ambrosini Dario (2024-07)
    On the Use of 3D Printing to Enhance the Thermal Performance of Building Envelope:
    A Review
  32. Şahin Oğuzhan, İlcan Hüseyin, Ateşli Anıl, Kul Anil et al. (2021-05)
    Construction and Demolition Waste-Based Geopolymers Suited for Use in 3D Additive Manufacturing
  33. Suiker Akke, Wolfs Robert, Lucas Sandra, Salet Theo (2020-06)
    Elastic Buckling and Plastic Collapse During 3D Concrete Printing
  34. Takva Çağatay, Top Semahat, Gökgöz Berru, Gebel Şeyma et al. (2024-11)
    Applicability of 3D Concrete Printing Technology in Building Construction with Different Architectural Design Decisions in Housing
  35. Vantyghem Gieljan, Corte Wouter, Shakour Emad, Amir Oded (2020-01)
    3D Printing of a Post-Tensioned Concrete Girder Designed by Topology-Optimization
  36. Wang Li, Jiang Hailong, Li Zhijian, Ma Guowei (2020-02)
    Mechanical Behaviors of 3D Printed Lightweight Concrete Structure with Hollow Section
  37. Weger Daniel, Gehlen Christoph, Korte Waldemar, Meyer-Brötz Fabian et al. (2022-02)
    Building Rethought:
    3D Concrete Printing in Building Practice

1 Citations

  1. Okangba Stanley, Ngcobo Ntebo, Mahachi Jeffrey (2025-12)
    Bridging Innovation and Governance:
    A UTAUT-Based Mixed-Method Study of 3D Concrete Printing Technology Acceptance in South Africa

BibTeX
@article{iler_takv_top_gokg.2025.TEo3CPTiAD,
  author            = "Zeynep Yeşim İlerisoy and Çağatay Takva and Semahat Merve Top and Berru İzel Gökgöz and Şeyma Gebel and Hüseyin İlcan and Mustafa Şahmaran",
  title             = "The Effectiveness of 3D Concrete Printing Technology in Architectural Design: Different Corner-Wall Combinations in 3D Printed Elements and Geometric Form Configurations in Residential Buildings",
  doi               = "10.1080/00038628.2025.2543003",
  year              = "2025",
  journal           = "Architectural Science Review",
  pages             = "1--17",
}
Formatted Citation

Z. Y. İlerisoy, “The Effectiveness of 3D Concrete Printing Technology in Architectural Design: Different Corner-Wall Combinations in 3D Printed Elements and Geometric Form Configurations in Residential Buildings”, Architectural Science Review, pp. 1–17, 2025, doi: 10.1080/00038628.2025.2543003.

İlerisoy, Zeynep Yeşim, Çağatay Takva, Semahat Merve Top, Berru İzel Gökgöz, Şeyma Gebel, Hüseyin İlcan, and Mustafa Şahmaran. “The Effectiveness of 3D Concrete Printing Technology in Architectural Design: Different Corner-Wall Combinations in 3D Printed Elements and Geometric Form Configurations in Residential Buildings”. Architectural Science Review, 2025, 1–17. https://doi.org/10.1080/00038628.2025.2543003.