Performance-Oriented Assessment of 3D-Printed Architecture for Small-Scale Housing (2026-01)¶
Chang Mengzhu, Zeng Jun
Journal Article - E3S Web of Conferences, Vol. 686, No. 02007
Abstract
3D-printed architecture is becoming a viable cast-in-place construction, especially for rapid, alternative to conventional masonry and low-cost, and low-waste buildings. To clarify its actual performance, this study develops an integrated cost–time–waste evaluation model and applies it to a 50 m² single-story 3D-printed concrete house. A comparable conventional house is used as a baseline. The results show that the printed scheme shortens structural-shell construction from 18–20 days to about 2 days, reduces total project duration by about 80%, lowers direct construction cost by 22%, and cuts construction waste by about 78%. A structural capacity margin analysis further indicates that, when vertical voids are post-grouted and a reinforced ring beam is added, the printed walls can achieve the target compressive strength of 30 MPa with an observed mean of 32 MPa. The proposed Integrated Performance Index (IPI), combining time, cost, and waste with adjustable weights, provides a quantitative tool to compare printed and non-printed solutions. The study concludes that 3D-printed architecture is technically feasible and performance-efficient for single-story housing, but its benefits depend on process control, printer utilization, and reinforcement integration.
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6 References
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Life Cycle Assessment of 3D-Printed Building Materials Towards Sustainability-Driven Optimization and Environmental Impact Analysis Using Computational Intelligence Techniques - Bradford Katy, Gentry Russell, Alon Lola, Kurtis Kimberly (2025-08)
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Performance Evaluation of Cementitious Composites by Designing an Extrusion System for Construction 3D Printing - Lee Chang-Hwan, Gwak Kwan-Woong (2025-09)
Experimental Validation of a Cable Driven Parallel Robot for 3D Printing Building Construction - Mohamed Osama, Mishra Anamika, Isam Fida (2025-05)
An Overview of 3D Printed Concrete for Building Structures:
Material Properties, Sustainability, Future Opportunities, and Challenges - Wang Yufei, Sun Junbo, Wang Xiangyu, Huang Bo et al. (2025-09)
Environmental and Economic Evaluation of a Prefabricated 3D-Printed Structural Units Using Recycled Aggregates from Construction and Demolition Waste:
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0 Citations
BibTeX
@article{chan_zeng.2026.POAo3PAfSSH,
author = "Mengzhu Chang and Jun Zeng",
title = "Performance-Oriented Assessment of 3D-Printed Architecture for Small-Scale Housing",
doi = "10.1051/e3sconf/202668602007",
year = "2026",
journal = "E3S Web of Conferences",
volume = "686",
pages = "02007",
}
Formatted Citation
M. Chang and J. Zeng, “Performance-Oriented Assessment of 3D-Printed Architecture for Small-Scale Housing”, E3S Web of Conferences, vol. 686, p. 02007, 2026, doi: 10.1051/e3sconf/202668602007.
Chang, Mengzhu, and Jun Zeng. “Performance-Oriented Assessment of 3D-Printed Architecture for Small-Scale Housing”. E3S Web of Conferences 686 (2026): 02007. https://doi.org/10.1051/e3sconf/202668602007.