Optimizing Limestone Calcined Clay Cement for Enhanced 3D Printing Performance of Low-Carbon Materials (2025-04)¶
, , el Seidy Eslam, ,
Journal Article - Journal of Building Engineering, No. 112634
Abstract
Limestone calcined clay cement (LC3) presents a suitable low-carbon cementitious material for large-scale 3D printing due to its long open time. This study investigates the impact of substituting up to 100% natural aggregate with recycled brick aggregates (BA) on the engineering properties, durability and printing properties of LC3. BA's rough surface and irregular shape reduced the workability of the LC3 mixtures even though the water absorption of BA was compensated for by adding extra water. The mechanical strength increased significantly in the presence of BA of around 36% to 62%. Moreover, incorporating BA was found to boost the hydration and allowed it continue due to the presence of additional water in its microstructure. The water absorptions of LC3 prepared with up to 70% replacement level of aggregates with BA were comparable to the reference mix, while a 100% replacement level increased the water absorption by around 9%. In contrast, incorporating BA improved the freeze-thaw resistivity by up to 25%. Moreover, it was found that incorporating BA improved the layer quality of 3D-printed filaments. The results of this study present a breakthrough in the recycling of brick aggregates in LC3 systems for both cast and 3D printing applications, which will help develop a more environmentally friendly mixture with high engineering performance.
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11 References
- Chen Yu, Figueiredo Stefan, Li Zhenming, Chang Ze et al. (2020-03)
Improving Printability of Limestone-Calcined-Clay-Based Cementitious Materials by Using Viscosity-Modifying Admixture - Chen Yu, Figueiredo Stefan, Yalçınkaya Çağlar, Çopuroğlu Oğuzhan et al. (2019-04)
The Effect of Viscosity-Modifying Admixture on the Extrudability of Limestone and Calcined-Clay-Based Cementitious Material for Extrusion-Based 3D Concrete Printing - Chougan Mehdi, Ghaffar Seyed, Nematollahi Behzad, Sikora Paweł et al. (2022-09)
Effect of Natural and Calcined-Halloysite-Clay-Minerals as Low-Cost-Additives on the Performance of 3D Printed Alkali-Activated Materials - Christen Heidi, Zijl Gideon, Villiers Wibke (2022-05)
The Incorporation of Recycled Brick-Aggregate in 3D Printed Concrete - Ibrahim Kamoru, Zijl Gideon, Babafemi Adewumi (2023-03)
Influence of Limestone-Calcined-Clay-Cement on Properties of 3D Printed Concrete for Sustainable Construction - Moelich Gerrit, Kruger Jacques, Combrinck Riaan (2022-04)
A Plastic Shrinkage Cracking-Risk-Model for 3D Printed Concrete Exposed to Different Environments - Noaimat Yazeed, Chougan Mehdi, Albar Abdulrahman, Skibicki Szymon et al. (2023-10)
Recycled Brick-Aggregates in One-Part Alkali-Activated Materials:
Impact on 3D Printing Performance and Material-Properties - Noaimat Yazeed, Chougan Mehdi, Kheetan Mazen, Mandhari Othman et al. (2023-04)
3D Printing of Limestone-Calcined-Clay-Cement:
A Review of Its Potential Implementation in the Construction-Industry - Noaimat Yazeed, Ghaffar Seyed, Chougan Mehdi, Kheetan Mazen (2022-12)
A Review of 3D Printing Low-Carbon Concrete with One-Part Geopolymer:
Engineering, Environmental and Economic Feasibility - Rahul Attupurathu, Santhanam Manu, Meena Hitesh, Ghani Zimam (2019-08)
Mechanical Characterization of 3D Printable Concrete - Tay Yi, Qian Ye, Tan Ming (2019-05)
Printability-Region for 3D Concrete Printing Using Slump- and Slump-Flow-Test
2 Citations
- Sedighi Saeed, Rahai Alireza, Moodi Faramarz (2025-10)
Multi-Criteria Optimization for Sustainable Concrete Mix Considering the Synergistic Effect of Recycled Steel Fiber and LC3 Concrete - Noaimat Yazeed, Chougan Mehdi, Sambucci Matteo, Valente Marco et al. (2025-06)
Optimising Limestone Calcined Clay Cement Containing Excavated Low-Grade Waste Clay for 3D Printing Applications
BibTeX
@article{noai_chou_seid_alba.2025.OLCCCfE3PPoLCM,
author = "Yazeed Afet Adnan Al Noaimat and Mehdi Chougan and Eslam El Seidy and Abdulrahman M. Albar and Seyed Hamidreza Ghaffar",
title = "Optimizing Limestone Calcined Clay Cement for Enhanced 3D Printing Performance of Low-Carbon Materials",
doi = "10.1016/j.jobe.2025.112634",
year = "2025",
journal = "Journal of Building Engineering",
pages = "112634",
}
Formatted Citation
Y. A. A. A. Noaimat, M. Chougan, E. E. Seidy, A. M. Albar and S. H. Ghaffar, “Optimizing Limestone Calcined Clay Cement for Enhanced 3D Printing Performance of Low-Carbon Materials”, Journal of Building Engineering, p. 112634, 2025, doi: 10.1016/j.jobe.2025.112634.
Noaimat, Yazeed Afet Adnan Al, Mehdi Chougan, Eslam El Seidy, Abdulrahman M. Albar, and Seyed Hamidreza Ghaffar. “Optimizing Limestone Calcined Clay Cement for Enhanced 3D Printing Performance of Low-Carbon Materials”. Journal of Building Engineering, 2025, 112634. https://doi.org/10.1016/j.jobe.2025.112634.