Compressive Behavior of 3D Printed Concrete with Different Printing Paths and Concrete Ages (2023-02)¶
Pan Zuanfeng, Si Doudou, Tao Jinghong,
Journal Article - Case Studies in Construction Materials, Vol. 18
Abstract
As an intelligent construction technology, 3D printed concrete has made great progress in recent years, but research on the development law of hardened mechanical properties of 3D printed concrete is relatively limited, and the influence of printing path on compressive behavior of 3D printed concrete still needs further research. This paper proposed a new printing path for extrusion based 3D printed concrete and investigated the compressive behavior of hardened concrete printed by the new printing path. The effect of printing path, concrete age, printing speed, specimen size, and replacement of natural sand by recycled sand were evaluated through compressive tests of specimens printed by different path at different ages. Compared with the traditional printing path, the new printing path could increase peak strain, elastic modulus, and cubic compressive strength of the printed concrete. The new printing path provided a preferable alternative solution for printed concrete subjected to compression. The results also indicate that the compressive strength of printed concrete at 3 days can reach 45%− 62% of the 28-day compressive strength, and the compressive strength at 7 days appears to achieve 68%− 89% of the 28-day compressive strength, and the printing path has minor effect on the development rate of compressive strength. Based on the test data analyses, an analytical model was proposed to describe the stress-strain relationship of concrete printed by two printing paths.
¶
23 References
- Bos Freek, Wolfs Robert, Ahmed Zeeshan, Salet Theo (2016-08)
Additive Manufacturing of Concrete in Construction:
Potentials and Challenges of 3D Concrete Printing - Casagrande Lorenzo, Esposito Laura, Menna Costantino, Asprone Domenico et al. (2020-02)
Effect of Testing Procedures on Buildability Properties of 3D Printable Concrete - Cesaretti Giovanni, Dini Enrico, Kestelier Xavier, Colla Valentina et al. (2013-08)
Building Components for an Outpost on the Lunar Soil by Means of a Novel 3D Printing Technology - Ding Tao, Xiao Jianzhuang, Zou Shuai, Wang Yu (2020-06)
Hardened Properties of Layered 3D Printed Concrete with Recycled Sand - Duballet Romain, Baverel Olivier, Dirrenberger Justin (2017-08)
Classification of Building Systems for Concrete 3D Printing - Hambach Manuel, Rutzen Matthias, Volkmer Dirk (2019-02)
Properties of 3D-Printed Fiber-Reinforced Portland Cement-Paste - Hassan Hilal, Najjar Fady, Jassmi Hamad, Ahmed Waleed (2020-07)
Fresh and Hardened Properties of 3D Printed Concrete Made with Dune Sand - Heras Murica Daniel, Genedy Moneeb, Taha Mahmoud (2020-09)
Examining the Significance of Infill-Printing-Pattern on the Anisotropy of 3D Printed Concrete - Huang Xin, Yang Weihao, Song Fangnian, Zou Jiuqun (2022-04)
Study on the Mechanical Properties of 3D Printing Concrete Layers and the Mechanism of Influence of Printing Parameters - Joh Changbin, Lee Jungwoo, Bui The, Park Jihun et al. (2020-11)
Buildability and Mechanical Properties of 3D Printed Concrete - Le Thanh, Austin Simon, Lim Sungwoo, Buswell Richard et al. (2012-01)
Hardened Properties of High-Performance Printing Concrete - Lim Sungwoo, Buswell Richard, Le Thanh, Austin Simon et al. (2011-07)
Developments in Construction-Scale Additive Manufacturing Processes - Liu Miao, Huang Yimiao, Wang Fang, Sun Junbo et al. (2021-05)
Tensile and Flexural Properties of 3D Printed Jackets-Reinforced Mortar - Ma Guowei, Li Zhijian, Wang Li, Wang Fang et al. (2019-01)
Mechanical Anisotropy of Aligned Fiber-Reinforced Composite for Extrusion-Based 3D Printing - Ma Guowei, Salman Nazar, Wang Li, Wang Fang (2020-02)
A Novel Additive Mortar Leveraging Internal Curing for Enhancing Inter-Layer Bonding of Cementitious Composite for 3D Printing - Panda Biranchi, Paul Suvash, Mohamed Nisar, Tay Yi et al. (2017-09)
Measurement of Tensile Bond Strength of 3D Printed Geopolymer Mortar - Perrot Arnaud, Rangeard Damien, Courteille Eric (2018-04)
3D Printing of Earth-Based Materials:
Processing Aspects - Tao Yaxin, Lesage Karel, Tittelboom Kim, Yuan Yong et al. (2021-11)
Influence of Substrate-Surface-Roughness and Moisture-Content on Tensile Adhesion Performance of 3D Printable Concrete - Tay Yi, Panda Biranchi, Paul Suvash, Mohamed Nisar et al. (2017-05)
3D Printing Trends in Building and Construction Industry:
A Review - Wang Li, Tian Zehao, Ma Guowei, Zhang Mo (2020-02)
Inter-Layer Bonding Improvement of 3D Printed Concrete with Polymer-Modified Mortar:
Experiments and Molecular Dynamics Studies - Wang Li, Xiao Wei, Wang Qiao, Jiang Hailong et al. (2022-07)
Freeze-Thaw-Resistance of 3D Printed Composites with Desert Sand - Wolfs Robert, Bos Freek, Salet Theo (2018-02)
Early-Age Mechanical Behaviour of 3D Printed Concrete:
Numerical Modelling and Experimental Testing - Zahabizadeh Behzad, Pereira João, Gonçalves Claúdia, Pereira Eduardo et al. (2021-03)
Influence of the Printing-Direction and Age on the Mechanical Properties of 3D Printed Concrete
27 Citations
- Iqbal Imtiaz, Kasim Tala, Besklubova Svetlana, Inqiad Waleed et al. (2025-12)
Exploring Knowledge Domains and Future Research Directions in 3D Printed Concrete:
A Bibliometric and Systematic Review - Abbas Yassir, Alsaif Abdulaziz (2025-11)
Explainable Data-Driven Modeling for Optimized Mix Design of 3D-Printed Concrete:
Interpreting Nonlinear Synergies Among Binder Components and Proportions - Raza Ali, Tan Binglin, Jiajia Zhou, Umar Muhammad et al. (2025-11)
Evaluation of Mechanical and Microstructural Properties of Sustainable 3D-Printed Engineered Cementitious Composites Incorporating Hybrid PE/PVA Fibers and Yellow River Sand - Li Shiping, Sun Yan, Qian Ye, Chen Wujun et al. (2025-11)
Bio-Inspired Jigsaw-Interlocking Suture Interfaces for Enhanced Flexural Response of 3D-Printed Strain-Hardening Cementitious Composites - Xu Shuhao, Lin Xing-Tao, Chen Xiangsheng (2025-11)
Numerical Investigation of Anisotropic in 3D Printed Concrete Specimens Considering the Effects of Weak Interfaces and Pore-Induced Defects - Flor Juncal Luis, Scott Allan, Clucas Don, Loporcaro Giuseppe (2025-11)
Influence of Alternative Supplementary Cementitious Materials and Printing Parameters on the Mechanical Properties of 3D-Printed Mortars - Drumond Pedro, Milagres Geysiane, Parassen Paloma, Santos Luana et al. (2025-10)
Assessment of Printing Direction in Flexural Tests of 3D Printed Reinforced Concrete Beams - Chen Baixi, Yang Lei, Jiang Sheng (2025-09)
Stochastic Analysis of 3D Concrete Printing Process with Curvature and Inclination by Explainable Data-Driven Modelling - Luo Surong, Jin Wenhao, Zhang Zhaorui, Zhang Kaijian (2025-09)
Constitutive Relationship of 3D Printed Fiber Reinforced Recycled Sand Concrete Under Uniaxial Compression - Kaur Zinnia, Goyal Shweta, Kwatra Naveen, Bera Tarun (2025-07)
Pore Structure Analysis and Durability Performance of Sustainable 3D Printed Concrete Incorporating Fly Ash and Limestone Calcined Clay Based Binders - Du Shizhao, Kang Chunxia, Du Xiuli (2025-06)
Fatigue Performance of 3D Printed Reusable Concrete Slabs for Temporary Pavements - Cisowski Adam, Kowalik Michał (2025-06)
The Influence of the Cross-Sectional Geometry on Stress Concentration in 3D Printed Concrete Elements:
A Preliminary Study - Sarıkaya M., Benam Shaghayegh, Yılmaz Taner, Erkmen Bülent et al. (2025-05)
Seismic Performance Assessment of 3D-Printed Concrete Structures - Zhou Biao, Zhou Hongru, Yoshioka Hideki, Noguchi Takafumi et al. (2025-04)
Mechanical and Microstructure Evolution of 3D Printed Concrete Interlayer at Elevated Temperatures - Khanverdi Mohsen, Das Sreekanta (2025-03)
Testing Prisms as a Method for Assessing Compressive Properties of 3D-Printed Structural Members:
Experimental and Numerical Studies - Zhao Herui, Jiang Quan, Xia Yong, Liu Jian et al. (2024-11)
Microbial-Induced Carbonate Reinforcement for 3D Printed Concrete:
Testing in Printable and Mechanical Strength - Flor Juncal Luis, Loporcaro Giuseppe, Scott Allan, Clucas Don (2024-10)
Influence of Printing-Parameters on the Durability of 3D Printed Limestone-Calcined-Clay-Cement Mortar:
Overlap Between Filaments and Nozzle-Offset - Shivendra Bandoorvaragerahalli, Sharath Chandra Sathvik, Singh Atul, Kumar Rakesh et al. (2024-09)
A Path Towards SDGs:
Investigation of the Challenges in Adopting 3D Concrete Printing in India - Mudadu Antonio, Giulivo Marco, Menna Costantino (2024-09)
The Effect of Printing-Path on the Shear Behavior of 3D Printed Concrete Panels Under Diagonal Compression-Test - Mani Aravindhraj, Sekar Muthu (2024-08)
Non-Destructive Testing Techniques for Investigating Mechanical Property and Porosity-Disparities in Extrusion 3D Printed Concrete - Hutyra Adam, Bańkosz Magdalena, Tyliszczak Bożena (2024-08)
Technology for Automated Production of High-Performance Building Compounds for 3D Printing - Nakase Kota, Hashimoto Katsufumi, Sugiyama Takafumi, Kono Katsuya (2024-06)
Influence of Print Paths on Mechanical Properties and Fracture Propagation of 3D Printed Concrete - Lu Yue, Xiao Jianzhuang, Li Yan (2024-03)
3D Printing Recycled Concrete Incorporating Plant-Fibers:
A Comprehensive Review - Põldaru Mattias, Tammkõrv Karl, Tusik Tanel, Kiviste Mihkel et al. (2023-11)
The Effect of Printing-Direction on the Strength Characteristics of a 3D Printed Concrete Wall-Section - Liu Dawei, Zhang Zhigang, Zhang Xiaoyue, Chen Zhaohui (2023-09)
3D Printing Concrete Structures:
State of the Art, Challenges, and Opportunities - Zuo Zibo, Corte Wouter, Huang Y., Zhang L. et al. (2023-08)
Measurement of the Density of Formed Structures for Concrete 3D Printing - Pessoa Ana Sofia, Jesus Manuel, Guimarães Ana, Lucas Sandra et al. (2023-07)
Experimental Characterisation of Hygrothermal Properties of a 3D Printed Cementitious Mortar
BibTeX
@article{pan_si_tao_xiao.2023.CBo3PCwDPPaCA,
author = "Zuanfeng Pan and Doudou Si and Jinghong Tao and Jianzhuang Xiao",
title = "Compressive Behavior of 3D Printed Concrete with Different Printing Paths and Concrete Ages",
doi = "10.1016/j.cscm.2023.e01949",
year = "2023",
journal = "Case Studies in Construction Materials",
volume = "18",
}
Formatted Citation
Z. Pan, D. Si, J. Tao and J. Xiao, “Compressive Behavior of 3D Printed Concrete with Different Printing Paths and Concrete Ages”, Case Studies in Construction Materials, vol. 18, 2023, doi: 10.1016/j.cscm.2023.e01949.
Pan, Zuanfeng, Doudou Si, Jinghong Tao, and Jianzhuang Xiao. “Compressive Behavior of 3D Printed Concrete with Different Printing Paths and Concrete Ages”. Case Studies in Construction Materials 18 (2023). https://doi.org/10.1016/j.cscm.2023.e01949.