Micro-Cable-Reinforced Geopolymer Composite for Extrusion-Based 3D Printing (2018-10)¶
, , , Bai Gang
Journal Article - Materials Letters, Vol. 235, pp. 144-147
Abstract
Geopolymer has been applied to accommodate the rapid development of 3D printing in civil engineering practices and contributed this technique to reach its maximum eco-friendly potentials by eliminating the use of Portland cement. However, inherent problems with 3D printing concrete lie in the low tensile strength and poor ductility due to non-reinforcement, which greatly limit the application of 3D printing materials and structures. Hence, this study experimentally explores the feasibility of directly entraining a continuous micro steel cable (1.2 mm) during filaments (12 mm) deposition process, forming a reinforced geopolymer composite material. Three different printing path configurations are deigned to verify the applicability of micro-cable reinforced geopolymer composite for extrusion-based 3D printing. Flexural bending capacities of the proposed composite is measured and evaluated through four-point bending test. The results prove the well bonding and coordination of the micro-cable and geopolymer. Significant improvement of mechanical strength, toughness and post-cracking deformation of geopolymer composite are demonstrated.
¶
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BibTeX
@article{ma_li_wang_bai.2019.MCRGCfEB3P,
author = "Guowei Ma and Zhijian Li and Li Wang and Gang Bai",
title = "Micro-Cable-Reinforced Geopolymer Composite for Extrusion-Based 3D Printing",
doi = "10.1016/j.matlet.2018.09.159",
year = "2019",
journal = "Materials Letters",
volume = "235",
pages = "144--147",
}
Formatted Citation
G. Ma, Z. Li, L. Wang and G. Bai, “Micro-Cable-Reinforced Geopolymer Composite for Extrusion-Based 3D Printing”, Materials Letters, vol. 235, pp. 144–147, 2019, doi: 10.1016/j.matlet.2018.09.159.
Ma, Guowei, Zhijian Li, Li Wang, and Gang Bai. “Micro-Cable-Reinforced Geopolymer Composite for Extrusion-Based 3D Printing”. Materials Letters 235 (2019): 144–47. https://doi.org/10.1016/j.matlet.2018.09.159.