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3D Printing of Calcined-Clay-Limestone-Based Cementitious Materials (2021-08)

10.1016/j.cemconres.2021.106553

 Chen Yu,  He Shan,  Zhang Yu,  Wan Zhi,  Çopuroğlu Oğuzhan,  Schlangen Erik
Journal Article - Cement and Concrete Research, Vol. 149

Abstract

This paper aims to investigate the influences of high Portland cement substitutions (>60 wt%) by low-grade calcined clay (CC) and limestone (LF) on 3D concrete printability, stiffness evolution and early-age hydration. Results show that, with the same dosage of admixtures (superplasticizer and viscosity modifier), increasing LF and CC content reduced the slump, flowability and initial material flow rate, and significantly improved the buildability of fresh mixtures, which can be attributed to the reduced water film thickness (WFT). Furthermore, the stiffness evolution and SSAtotal development up to the first 3 h were accelerated by increasing CC content, which can also be linked to the change of WFT, and consumption of superplasticizer for the dispersion induced by hydration products. Additionally, the dilution effect on compressive strength and hydration caused by the high cement replacement was observed.

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BibTeX
@article{chen_he_zhan_wan.2021.3PoCCLBCM,
  author            = "Yu Chen and Shan He and Yu Zhang and Zhi Wan and Oğuzhan Çopuroğlu and Erik Schlangen",
  title             = "3D Printing of Calcined-Clay-Limestone-Based Cementitious Materials",
  doi               = "10.1016/j.cemconres.2021.106553",
  year              = "2021",
  journal           = "Cement and Concrete Research",
  volume            = "149",
}
Formatted Citation

Y. Chen, S. He, Y. Zhang, Z. Wan, O. Çopuroğlu and E. Schlangen, “3D Printing of Calcined-Clay-Limestone-Based Cementitious Materials”, Cement and Concrete Research, vol. 149, 2021, doi: 10.1016/j.cemconres.2021.106553.

Chen, Yu, Shan He, Yu Zhang, Zhi Wan, Oğuzhan Çopuroğlu, and Erik Schlangen. “3D Printing of Calcined-Clay-Limestone-Based Cementitious Materials”. Cement and Concrete Research 149 (2021). https://doi.org/10.1016/j.cemconres.2021.106553.