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3D-Printing of a Basic Housing Unit Prototype Using Earthen-Based Matrices Stabilized with Rice Husk Fibers (2025-02)

10.1016/j.jobe.2025.112111

 Zavaleta Diana,  Quispe Axcel,  Rojas Omar,  Silva Guido,  Kim Suyeon,  Nakamatsu Javier,  Ruiz Gaby,  Pando Miguel,  Aguilar Rafael
Journal Article - Journal of Building Engineering, No. 112111

Abstract

The construction industry faces significant challenges, including the urgent need to minimize environmental impact and develop more efficient building methods. Additive manufacturing, commonly known as 3D-printing, has emerged as a promising solution due to its advantages, such as rapid fabrication, design flexibility, cost reduction, and enhanced safety. This technology enables the creation of structures from digital models through automated layering, presenting opportunities for mass production with innovative materials and architectural designs. This article focuses on developing eco-friendly earthen-based materials stabilized with 9% cement and 2% rice husk (RH) for large-scale 3D-printed construction. The raw materials were characterized using geotechnical tests for soil, water absorption tests for natural fibers, and SEM-EDS to examine their microstructure and elemental composition. Key properties such as rheology, printability (pumpability and extrudability), buildability, and compressive strength were evaluated to ensure the material's optimal performance in both fresh and hardened states. By utilizing locally sourced materials such as soil and rice husk, the mixture significantly reduces environmental impact and production costs, making it a sustainable alternative for large-scale 3D-printed construction. The material was integrated into architectural and digital fabrication techniques to construct a bioinspired housing prototype showcases the practical application of the developed material, demonstrating its scalability, adaptability, and suitability for innovative and cost-effective real housing solutions. The article highlights the feasibility of using earthen-based materials for sustainable 3D-printed housing, thereby opening new possibilities for advancing greener construction practices in the future.

21 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. Bici Andjol, Yunitsyna Anna (2023-07)
    Analysis of 3D Printing Techniques for Building Construction:
    A Review
  3. D'Haese Romain, Carpentier Olivier, Dubois Vincent, Chafei Sawsen et al. (2022-10)
    3D Printable Materials Made with Industrial Byproducts:
    Formulation, Fresh and Hardened Properties
  4. Ghaffar Seyed, Corker Jorge, Fan Mizi (2018-05)
    Additive Manufacturing Technology and Its Implementation in Construction as an Eco-Innovative Solution
  5. Gomaa Mohamed, Jabi Wassim, Veliz-Reyes Alejandro, Soebarto Veronica (2021-01)
    3D Printing System for Earth-Based Construction:
    Case Study of Cob
  6. Ji Yameng, Poullain Philippe, Leklou Ali (2023-09)
    The Selection and Design of Earthen Materials for 3D Printing
  7. Keating Steven, Leland Julian, Cai Levi, Oxman Neri (2017-04)
    Toward Site-Specific and Self-Sufficient Robotic Fabrication on Architectural-Scales
  8. Khoshnevis Behrokh (2003-11)
    Automated Construction by Contour Crafting:
    Related Robotics and Information Technologies
  9. Labonnote Nathalie, Rønnquist Anders, Manum Bendik, Rüther Petra (2016-09)
    Additive Construction:
    State of the Art, Challenges and Opportunities
  10. Le Thanh, Austin Simon, Lim Sungwoo, Buswell Richard et al. (2012-01)
    Mix-Design and Fresh Properties for High-Performance Printing Concrete
  11. Perrot Arnaud, Rangeard Damien, Courteille Eric (2018-04)
    3D Printing of Earth-Based Materials:
    Processing Aspects
  12. Perrot Arnaud, Rangeard Damien, Pierre Alexandre (2015-02)
    Structural Build-Up of Cement-Based Materials Used for 3D Printing-Extrusion-Techniques
  13. Raza Muhammad, Zhong Ray (2022-08)
    A Sustainable Roadmap for Additive Manufacturing Using Geopolymers in Construction Industry
  14. Sakin Mehmet, Kiroglu Yusuf (2017-10)
    3D Printing of Buildings:
    Construction of the Sustainable Houses of the Future by BIM
  15. Sayegh Sameh, Romdhane Lotfi, Manjikian Solair (2022-03)
    A Critical Review of 3D Printing in Construction:
    Benefits, Challenges, and Risks
  16. Siddika Ayesha, Mamun Md., Ferdous Wahid, Saha Ashish et al. (2019-12)
    3D Printed Concrete:
    Applications, Performance, and Challenges
  17. Silva Guido, Ñañez Robert, Zavaleta Diana, Burgos Valeria et al. (2022-07)
    Eco-Friendly Additive Construction:
    Analysis of the Printability of Earthen-Based Matrices Stabilized with Potato-Starch-Gel and Sisal-Fibers
  18. Singh Narinder, Colangelo Francesco, Farina Ilenia (2023-06)
    Sustainable Non-Conventional Concrete 3D Printing:
    A Review
  19. Wang Li, Jiang Hailong, Li Zhijian, Ma Guowei (2020-02)
    Mechanical Behaviors of 3D Printed Lightweight Concrete Structure with Hollow Section
  20. Zavaleta Diana, Ñañez Robert, Silva Guido, Ruiz Gaby et al. (2023-11)
    Additive Construction Using Enhanced Earthen-Based Composites:
    Improvement of the Mechanical Strength and Water Durability Using Chitosan and Agave-Fibers
  21. Zhang Jing, Khoshnevis Behrokh (2012-09)
    Optimal Machine Operation Planning for Construction by Contour Crafting

0 Citations

BibTeX
@article{zava_quis_roja_silv.2025.3PoaBHUPUEBMSwRHF,
  author            = "Diana Zavaleta and Axcel Quispe and Omar Rojas and Guido Silva and Suyeon Kim and Javier Nakamatsu and Gaby Ruiz and Miguel A. Pando and Rafael Aguilar",
  title             = "3D-Printing of a Basic Housing Unit Prototype Using Earthen-Based Matrices Stabilized with Rice Husk Fibers",
  doi               = "10.1016/j.jobe.2025.112111",
  year              = "2025",
  journal           = "Journal of Building Engineering",
  pages             = "112111",
}
Formatted Citation

D. Zavaleta, “3D-Printing of a Basic Housing Unit Prototype Using Earthen-Based Matrices Stabilized with Rice Husk Fibers”, Journal of Building Engineering, p. 112111, 2025, doi: 10.1016/j.jobe.2025.112111.

Zavaleta, Diana, Axcel Quispe, Omar Rojas, Guido Silva, Suyeon Kim, Javier Nakamatsu, Gaby Ruiz, Miguel A. Pando, and Rafael Aguilar. “3D-Printing of a Basic Housing Unit Prototype Using Earthen-Based Matrices Stabilized with Rice Husk Fibers”. Journal of Building Engineering, 2025, 112111. https://doi.org/10.1016/j.jobe.2025.112111.