Study on the Mechanical Properties of 3D-Printed Continuous Jute Yarn-Reinforced Concrete (2025-12)¶
10.1016/j.conbuildmat.2025.145047
Cui Xiaoshuang, Pu Xianghao, , , , Pang Guibing
Journal Article - Construction and Building Materials, Vol. 506, No. 145047
Abstract
The inherent brittleness of 3D-printed concrete limits its structural applications. To enhance toughening methods and improve their effectiveness, this study introduced a novel 3D printing strategy that coaxially embeds continuous flexible jute yarns as toughening agents into concrete. Macroscopic mechanical tests reveal how the jute yarn diameter and volume content methodically influence the compressive strength, flexural strength, mechanical anisotropy, and toughness of 3D-printed cement composites cured for 3 and 28 days. Our results demonstrate that the incorporation of continuous jute yarn significantly enhances mechanical properties under Z-axis loading, markedly increasing the flexural strength of 28-day-cured composites by 203.1 %, coupled with a 734.78 % improvement in the flexural-to-compressive strength ratio and a 210.35 % gain in fracture energy compared with the control group. Microscopic analysis revealed that synergistic toughening mechanisms such as crack bridging, interface debonding, and plastic deformation during jute yarn pull-out are primarily responsible for this enhanced strength and toughness.
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26 References
- Ahmed Ghafur, Askandar Nasih, Jumaa Ghazi (2022-07)
A Review of Large-Scale 3DCP:
Material-Characteristics, Mix-Design, Printing-Process, and Reinforcement-Strategies - Ding Tao, Peng Zechen, Dong Haining (2025-05)
Mechanical Properties of CFRP Grid Reinforced 3D Printed Concrete Arch Structures - Du Jiashuai, Wei Yazhi, Zhang Hui, Idriss Aboubaker (2024-06)
Effects of Oyster-Shell-Derivatives on Performance Enhancement of Biomass-Based 3D Printed Concrete - Duan Jiaqi, Sun Shouzheng, Chi Shengfeng, Hu Chunyou et al. (2024-06)
Effect of Process Parameters on Forming Quality and Flexural Strength of Continuous-Fiber-Reinforced Cement-Based 3D Printed Composites - Kamhawi Abdallah, Meibodi Mania (2024-09)
Techniques and Strategies in Extrusion-Based 3D Concrete Printing of Complex Components to Prevent Premature Failure - Kloft Harald, Sawicki Bartłomiej, Bos Freek, Dörrie Robin et al. (2024-09)
Interaction of Reinforcement, Process, and Form in Digital Fabrication with Concrete - Li Shuai, Khieu Hai, Black Jay, Nguyen Hung-Xuan et al. (2024-12)
Two-Scale 3D Printed Steel-Fiber-Reinforcements-Strategy for Concrete Structures - Li Zhijian, Wang Li, Ma Guowei, Sanjayan Jay et al. (2020-07)
Strength and Ductility Enhancement of 3D Printing Structure Reinforced by Embedding Continuous Micro-Cables - Lim Jian, Panda Biranchi, Pham Quang-Cuong (2018-05)
Improving Flexural Characteristics of 3D Printed Geopolymer Composites with In-Process Steel-Cable-Reinforcement - Liu Bing, Chen Yuwen, Li Dongdong, Wang Yang et al. (2024-09)
Study on the Fracture Behavior and Anisotropy of 3D Printing PVA-Fiber-Reinforced Concrete - Lu Yue, Xiao Jianzhuang, Li Yan (2024-03)
3D Printing Recycled Concrete Incorporating Plant-Fibers:
A Comprehensive Review - Mechtcherine Viktor, Buswell Richard, Kloft Harald, Bos Freek et al. (2021-02)
Integrating Reinforcement in Digital Fabrication with Concrete:
A Review and Classification Framework - Mohamed Osama, Mishra Anamika, Isam Fida (2025-05)
An Overview of 3D Printed Concrete for Building Structures:
Material Properties, Sustainability, Future Opportunities, and Challenges - Neef Tobias, Müller Steffen, Mechtcherine Viktor (2024-03)
Integrating Continuous Mineral-Impregnated Carbon-Fibers into Digital Fabrication with Concrete - Ramesh Akilesh, Rajeev Pathmanathan, Sanjayan Jay, Mechtcherine Viktor (2024-06)
In-Process Textile Reinforcement Method for 3D Concrete Printing and Its Structural Performance - Riaz Raja, Usman Muhammad, Ali Ammar, Majid Usama et al. (2023-06)
Inclusive Characterization of 3D Printed Concrete in Additive Manufacturing:
A Detailed Review - Salaimanimagudam M., Jayaprakash Jaganathan (2025-04)
Effect of Nozzle Stand-Off Distance, Printing Interval, and Inclusion of Glass Fiber Mesh Reinforcement in 3D Printed Concrete - Si Qi, Zhang Wenna, Pan Zhihong, Zheng Jianqiang et al. (2025-04)
Study on the Mechanical and Durability Properties of 3D-Printed Bamboo Fiber-Reinforced Concrete - Wang Zhibin, Jia Lutao, Deng Zhicong, Zhang Chao et al. (2022-08)
Bond Behavior Between Steel-Bars and 3D Printed Concrete:
Effect of Concrete Rheological Property, Steel-Bar Diameter and Paste-Coating - Xia Zhenjiang, Geng Jian, Zhou Zhijie, Liu Genjin (2025-01)
Comparative Analysis of Polypropylene, Basalt, and Steel Fibers in 3D Printed Concrete:
Effects on Flowability, Printabiliy, Rheology, and Mechanical Performance - Yang Xia, Wang Jiuyuan, Huang Han, Wu Gengchen et al. (2025-08)
Anti-Washout Cement-Based Material for Under-Seawater 3D Concrete Printing:
Design, Mechanical Properties and Microstructural Analysis - Yemesegen Eden, Memari Ali (2023-07)
A Review of Experimental Studies on Cob, Hempcrete, and Bamboo Components and the Call for Transition Towards Sustainable Home Building with 3D Printing - Zhang Nan, Sanjayan Jay (2025-08)
Concrete 3D Printing and Digital Fabrication Technologies for Bridge Construction - Zhang Nan, Xia Ming, Sanjayan Jay (2021-10)
Short-Duration Near-Nozzle Mixing for 3D Concrete Printing - Zhang Yi, Zhu Yanmei, Ren Qiang, He Bei et al. (2023-08)
Comparison of Printability and Mechanical Properties of Rigid and Flexible Fiber-Reinforced 3D Printed Cement-Based Materials - Zhou Yi, Althoey Fadi, Alotaibi Badr, Gamil Yaser et al. (2023-10)
An Overview of Recent Advancements in Fiber-Reinforced 3D Printing Concrete
0 Citations
BibTeX
@article{cui_pu_zhan_li.2026.SotMPo3PCJYRC,
author = "Xiaoshuang Cui and Xianghao Pu and Dongyang Zhang and Weihong Li and Hui Zhang and Guibing Pang",
title = "Study on the Mechanical Properties of 3D-Printed Continuous Jute Yarn-Reinforced Concrete",
doi = "10.1016/j.conbuildmat.2025.145047",
year = "2026",
journal = "Construction and Building Materials",
volume = "506",
pages = "145047",
}
Formatted Citation
X. Cui, X. Pu, D. Zhang, W. Li, H. Zhang and G. Pang, “Study on the Mechanical Properties of 3D-Printed Continuous Jute Yarn-Reinforced Concrete”, Construction and Building Materials, vol. 506, p. 145047, 2026, doi: 10.1016/j.conbuildmat.2025.145047.
Cui, Xiaoshuang, Xianghao Pu, Dongyang Zhang, Weihong Li, Hui Zhang, and Guibing Pang. “Study on the Mechanical Properties of 3D-Printed Continuous Jute Yarn-Reinforced Concrete”. Construction and Building Materials 506 (2026): 145047. https://doi.org/10.1016/j.conbuildmat.2025.145047.