Hardened Properties and Durability of Large-Scale 3D Printed Cement-Based Materials (2021-02)¶
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Journal Article - Materials and Structures, Vol. 54, Iss. 1
Abstract
This study systematically investigates the hardened properties, durability and void distribution of large-scale 3D printed cement-based materials (3DPC). Experimental results indicate that 3DPC has higher compressive and flexural strengths, lower drying shrinkage, better resistance against sulfate attack and carbonation than mold-cast cement-based materials, but lower resistance to frost damage and chloride ion penetration. Computed tomography scanning reveals that voids in 3DPC are strongly oriented along the printing direction. Furthermore, the voids are much more inter-connected and even continuous among the printed filaments. This unique void distribution is the origin of anisotropy for 3DPC and can explain the determined directional dependency of mechanical strengths and durability performance. Along the printing direction, the more connected voids render more channels for gas and liquid to penetrate into 3DPC.
¶
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3D Printed Concrete:
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In-Crease:
Less Concrete More Paper - Şahin Hatice, Mardani Ali (2023-02)
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Cement Composites with Carbon-Based Nanomaterials for 3D Concrete Printing Applications:
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3D Printing for Remote Housing:
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3D Cement Printing:
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Unraveling Pore-Structure Alternations in 3D Printed Geopolymer Concrete and Corresponding Impacts on Macro-Properties - Zhang Yu, Zhang Yunsheng, Yang Lin, Liu Guojian et al. (2022-08)
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Real-Time Vision-Based Control of Industrial Manipulators for Layer-Width Setting in Concrete 3D Printing Applications - Nodehi Mehrab, Aguayo Federico, Nodehi Shahab, Gholampour Aliakbar et al. (2022-07)
Durability Properties of 3D Printed Concrete - Yu Shiwei, Sanjayan Jay, Du Hongjian (2022-07)
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A Review - Zhang Hanghua, Xiao Jianzhuang, Duan Zhenhua, Zou Shuai et al. (2022-06)
Effects of Printing Paths and Recycled Fines on Drying Shrinkage of 3D Printed Mortar - Flatt Robert, Wangler Timothy (2022-05)
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Technology Readiness:
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Creating Functionally Graded Concrete Materials with Varying 3D Printing Parameters - Zhang Yu, Qiao Hongxia, Qian Rusheng, Xue Cuizhen et al. (2022-02)
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Microstructural Examination of Carbonated 3D Printed Concrete - Ji Guangchao, Xiao Jianzhuang, Zhi Peng, Wu Yuching et al. (2022-02)
Effects of Extrusion-Parameters on Properties of 3D Printing Concrete with Coarse Aggregates - Dey Dhrutiman, Srinivas Dodda, Panda Biranchi, Suraneni Prannoy et al. (2022-02)
Use of Industrial Waste-Materials for 3D Printing of Sustainable Concrete:
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The Relationship Between the Rheological Behavior and Inter-Layer Bonding Properties of 3D Printing Cementitious Materials with the Addition of Attapulgite - Xu Yanqun, Yuan Qiang, Li Zemin, Shi Caijun et al. (2021-09)
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3D Concrete Printing:
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A Concise Review on Inter-Layer Bond Strength in 3D Concrete Printing - Sun Junbo, Huang Yimiao, Aslani Farhad, Wang Xiangyu et al. (2021-05)
Mechanical Enhancement for EMW-Absorbing Cementitious Material Using 3D Concrete Printing - Chen Yidong, Zhang Yunsheng, Pang Bo, Liu Zhiyong et al. (2021-05)
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BibTeX
@article{zhan_zhan_yang_liu.2021.HPaDoLS3PCBM,
author = "Yu Zhang and Yunsheng Zhang and Lin Yang and Guojian Liu and Yidong Chen and Shiwei Yu and Hongjian Du",
title = "Hardened Properties and Durability of Large-Scale 3D Printed Cement-Based Materials",
doi = "10.1617/s11527-021-01632-x",
year = "2021",
journal = "Materials and Structures",
volume = "54",
number = "1",
}
Formatted Citation
Y. Zhang, “Hardened Properties and Durability of Large-Scale 3D Printed Cement-Based Materials”, Materials and Structures, vol. 54, no. 1, 2021, doi: 10.1617/s11527-021-01632-x.
Zhang, Yu, Yunsheng Zhang, Lin Yang, Guojian Liu, Yidong Chen, Shiwei Yu, and Hongjian Du. “Hardened Properties and Durability of Large-Scale 3D Printed Cement-Based Materials”. Materials and Structures 54, no. 1 (2021). https://doi.org/10.1617/s11527-021-01632-x.