EARTH-BASED MATERIALS FOR ADDITIVE MANUFACTURING IN CONSTRUCTION: A SELECTIVE REVIEW OF MIX DESIGN

Authors

DOI:

https://doi.org/10.30888/2663-5712.2025-34-01-062

Keywords:

3D printing, extrusion, mix design, printable earth-based structures.

Abstract

A selective review of the up-to-date research on the additive manufacturing (AM) in construction - 3D printing technology from the earth-based materials perspective. Ways of tailoring effective mix design for the in-situ printing process using local mate

References

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Hanifi, Hassan. (2024). Advantages and Challenges of 3D Printing Technology in Sustainable Construction Projects. 2nd International Congress on Science, engineering & New Technologies July 11, 2024 | Hamburg, Germany. https://www.researchgate.net/publication/382360409

Ramezani, Amir & Modaresi, Shahriar & Dashti, Pooria & Givkashi, Mohammad Rasul & Moodi, Faramarz & Ramezanianpour, Ali. (2023). Effects of Different Types of Fibers on Fresh and Hardened Properties of Cement and Geopolymer-Based 3D Printed Mixtures: A Review. Buildings. 13. 10.3390/buildings13040945.

Ghosh, Bittu & Karmakar, S. (2024). 3D Printing Technology and Future of Construction: A Review. IOP Conference Series: Earth and Environmental Science. 1326. 012001. 10.1088/1755-1315/1326/1/012001.

Silva Mondragón, Guido & Burgos, Valeria & Ñañez, Robert & Kim, Suyeon & Ruiz, Gaby & Pando, Miguel & Aguilar, Rafael & Nakamatsu, Javier. (2023). Soil-Cement Matrices for Additive Construction: 3D Printing System Validation and Printing Tests. Materials Science Forum. 1093. 143-150. 10.4028/p-sC9yI5.

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Bhusal, Shiva & Uviña, Francisco & Hojati, Maryam. (2022). Preliminary study on 3D printing of locally available earthen materials in New Mexico. https://www.researchgate.net/publication/365945674

Zavaleta, Diana & Ñañez, Robert & Silva Mondragón, Guido & Kim, Suyeon & Ruiz, Gaby & Pando, Miguel & Nakamatsu, Javier & Aguilar, Rafael. (2023). Evaluation of Chitosan and Potato Starch as Stabilizers to Improve the Mechanical and Water Durability Properties of Printable Earth-Based Matrices Reinforced with Sisal Fibers. Materials Science Forum. 1093. 151-159. 10.4028/p-knYma7.

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Published

2025-11-30

How to Cite

Масляненко, Є., & Хлицов, М. (2025). EARTH-BASED MATERIALS FOR ADDITIVE MANUFACTURING IN CONSTRUCTION: A SELECTIVE REVIEW OF MIX DESIGN. SWorldJournal, 1(34-01), 71–76. https://doi.org/10.30888/2663-5712.2025-34-01-062

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Section

Articles