Optimization of Fiber-Reinforced Lightweight Rubber-Concrete Mix-Design for 3D Printing (2024-03)¶
Xiong Baocheng, Nie Ping, , Li Xiaoxi, , , , , Wang Liang
Journal Article - Journal of Building Engineering, No. 109105
Abstract
A novel lightweight insulation concrete for 3D concrete printing is developed in this study, which incorporates crumb rubber (R) as a modifier to achieve low density, exceptional thermal insulation properties, and high ductility. The mechanical properties and fiber reinforcement mechanism of lightweight rubber aggregate concrete (CR) are investigated under varying R substitution rates, encompassing compressive strength, flexural strength, tensile strength, and tensile strain of CR. The thermal conductivity test offers insights into the thermal insulation mechanism of CR. The study investigates the compatibility between the material properties of fiber reinforced rubber concrete and the parameter matching of concrete printing equipment, as well as explores the relationship between interlayer bond strength and material composition. The optimal water-binder ratio for 3D printed fiber-reinforced lightweight rubber concrete compatible with printer equipment is determined through fluidity experiments and buildability tests. The findings indicate a statistically significant decrease in CR density by 16.5% when the replacement rate reaches 30%. Although the mechanical strength of CR decrease with the increasing substitution rate of R, the tensile strain showe an increasing trend. The addition of glass fiber reinforcement resulted in a notable enhancement of the mechanical properties and a significant increase in tensile strain for CR. In addition, CR thermal conductivity is reduced by 20.65%, with the excellent thermal insulation performance. This study is of great significance to promote the rational utilization of rubber resources, promote the development of circular economy, and build a conservation-oriented and environment-friendly society.
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15 References
- Arunothayan Arun, Nematollahi Behzad, Ranade Ravi, Bong Shin et al. (2020-10)
Development of 3D Printable Ultra-High-Performance Fiber-Reinforced Concrete for Digital Construction - Ding Tao, Xiao Jianzhuang, Zou Shuai, Wang Yu (2020-06)
Hardened Properties of Layered 3D Printed Concrete with Recycled Sand - Hossain Md., Zhumabekova Altynay, Paul Suvash, Kim Jong (2020-10)
A Review of 3D Printing in Construction and Its Impact on the Labor Market - Liu Huawei, Liu Chao, Wu Yiwen, Bai Guoliang et al. (2022-09)
3D Printing Concrete with Recycled Coarse Aggregates:
The Influence of Pore-Structure on Inter-Layer Adhesion - Lyu Fuyan, Zhao Dongliang, Hou Xiaohui, Sun Li et al. (2021-10)
Overview of the Development of 3D Printing Concrete:
A Review - Nerella Venkatesh, Krause Martin, Mechtcherine Viktor (2019-11)
Direct Printing-Test for Buildability of 3D Printable Concrete Considering Economic Viability - Sambucci Matteo, Marini Danilo, Sibai Abbas, Valente Marco (2020-08)
Preliminary Mechanical Analysis of Rubber-Cement Composites Suitable for Additive Process Construction - Sanjayan Jay, Jayathilakage Roshan, Rajeev Pathmanathan (2020-11)
Vibration-Induced Active Rheology-Control for 3D Concrete Printing - Sayegh Sameh, Romdhane Lotfi, Manjikian Solair (2022-03)
A Critical Review of 3D Printing in Construction:
Benefits, Challenges, and Risks - Wang Chaofan, Chen Bing, Vo Thanh, Rezania Mohammad (2023-07)
Mechanical Anisotropy, Rheology and Carbon Footprint of 3D Printable Concrete:
A Review - Weng Yiwei, Li Mingyang, Ruan Shaoqin, Wong Teck et al. (2020-03)
Comparative Economic, Environmental and Productivity-Assessment of a Concrete Bathroom Unit Fabricated Through 3D Printing and a Pre-Cast Approach - Xiao Jianzhuang, Ji Guangchao, Zhang Yamei, Ma Guowei et al. (2021-06)
Large-Scale 3D Printing Concrete Technology:
Current Status and Future Opportunities - Xu Zhuoyue, Zhang Dawang, Li Hui, Sun Xuemei et al. (2022-05)
Effect of FA and GGBFS on Compressive Strength, Rheology, and Printing Properties of Cement-Based 3D Printing Material - Yang Yekai, Wu Chengqing, Liu Zhongxian, Wang Hailiang et al. (2021-10)
Mechanical Anisotropy of Ultra-High-Performance Fiber-Reinforced Concrete for 3D Printing - Ye Junhong, Cui Can, Yu Jiangtao, Yu Kequan et al. (2021-01)
Fresh and Anisotropic-Mechanical Properties of 3D Printable Ultra-High-Ductile Concrete with Crumb-Rubber
9 Citations
- Sun Hou-Qi, Zeng Jun-Jie, Xie Shan-Shan, Xia Jun-Run et al. (2025-09)
Mechanical and Microstructural Characterization of Interlayer Bonding in Multi-Material 3D-Printed Concrete - Bajwa Asad, Samarasinghe Don, Flemmer Claire, Bao Ding (2025-06)
A Systematic Literature Review on the Thermal Behaviour of Building Elements Constructed Through 3D Concrete Printing (3DCP) - Ding Tao, Qu Changwei, Guo Dingming (2025-06)
Thermal and Mechanical Properties of 3D Printed Functionally Graded Concrete:
Utilizing Fibers and Recycled Aggregates as Gradient Components - Tao Yaxin, Zhang Yi, Mohan Manu, Dai Xiaodi et al. (2025-05)
Waste-Derived Aggregates in 3D Printable Concrete:
Current Insights and Future Perspectives - Xiong Baocheng, Liu Huanbao, Nie Ping, Li Xiaoxi et al. (2025-04)
Effect of Different Surface Modification Methods of Small Particle Size Recycled Rubber Powder on Mechanical Properties of 3D Printed Concrete - Liu Qiang, Jiang Quan, Zhao Herui, Yu Yang et al. (2025-02)
Porous Diatomite Promotes Lightweight and Low-Carbon Concrete 3D Printing:
An Exploratory Study - Yu Ke-Ke, Zhao Tai-Qi, Lou Qi-Ling, Ping Yang (2024-10)
Recycled PET Fibers with Dopamine Surface Modification for Enhanced Inter-Layer Adhesion in 3D Printed Concrete - Althoey Fadi, Zaid Osama, Ahmed Bilal, Elhadi Khaled (2024-10)
Impact of Double Hooked Steel-Fibers and Nano-Kaolin-Clay on Fresh Properties of 3D Printable Ultra-High-Performance Fiber-Reinforced Concrete - 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
BibTeX
@article{xion_nie_liu_li.2024.OoFRLRCMDf3P,
author = "Baocheng Xiong and Ping Nie and Huanbao Liu and Xiaoxi Li and Zihan Li and Wenyu Jin and Xiang Cheng and Guangming Zheng and Liang Wang",
title = "Optimization of Fiber-Reinforced Lightweight Rubber-Concrete Mix-Design for 3D Printing",
doi = "10.1016/j.jobe.2024.109105",
year = "2024",
journal = "Journal of Building Engineering",
pages = "109105",
}
Formatted Citation
B. Xiong, “Optimization of Fiber-Reinforced Lightweight Rubber-Concrete Mix-Design for 3D Printing”, Journal of Building Engineering, p. 109105, 2024, doi: 10.1016/j.jobe.2024.109105.
Xiong, Baocheng, Ping Nie, Huanbao Liu, Xiaoxi Li, Zihan Li, Wenyu Jin, Xiang Cheng, Guangming Zheng, and Liang Wang. “Optimization of Fiber-Reinforced Lightweight Rubber-Concrete Mix-Design for 3D Printing”. Journal of Building Engineering, 2024, 109105. https://doi.org/10.1016/j.jobe.2024.109105.