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3D Printable Hemp Concrete (2025-10)

Rheological, Mechanical, and Microstructural Properties

10.1016/j.jobe.2025.114467

 Ngo Than,  Li Shuai, Huynh Tien, Zhang Y.,  Tran Jonathan
Journal Article - Journal of Building Engineering, No. 114467

Abstract

Hemp concrete, as one variety of vegetal concretes, has been extensively studied as it holds promise as a sustainable, high-performing, and eco-conscious building materials by its carbon-sequestering characteristics, yet its potential and early stages of development for 3D Concrete Printing (3DCP) remains largely unexplored. While previous studies on 3D printing of hemp concrete are limited and mostly focus on feasibility using cylinder pumping, this study is the first to systematically investigate 3D-printed hemp concrete using a robotic 3D printing system. This study demonstrates the feasibility of incorporating hemp shivs into printable sustainable concrete for 3DCP. The effect of hemp shivs on printability, buildability, compressive strength and flexural strength are examined experimentally. Experimental results show that the addition of hemp shivs of 1 – 4% by weight of sand improves the flowability by 16.7% without significantly reducing the buildability (±1.7% relative to control mix). Furthermore, in comparison with the control mixture, the flexural strength of 3D printable hemp concrete exhibits larger reduction (57 – 60.6%) stacked up against their compressive strength (45.9 – 54.8% depends on printing directions). Microstructural characterization indicates that pre-treatment of hemp and optimized particle grading can further improve interlayer bonding and pore distribution. Overall, the findings confirm that hemp-based mixtures can be adapted for 3DCP, offering a pathway to carbon-conscious construction materials while identifying key parameters for future optimization.

31 References

  1. Ahmed Ghafur, Askandar Nasih, Jumaa Ghazi (2022-07)
    A Review of Large-Scale 3DCP:
    Material-Characteristics, Mix-Design, Printing-Process, and Reinforcement-Strategies
  2. Bi Minghao, Tran Jonathan, Xia Lingwei, Ma Guowei et al. (2022-06)
    Topology-Optimization for 3D Concrete Printing with Various Manufacturing-Constraints
  3. Cai Jianguo, Wang Jingsong, Zhang Qian, Du Caixia et al. (2024-10)
    State of the Art of Mechanical Properties of 3D Printed Concrete
  4. Chen Yu, He Shan, Gan Yidong, Çopuroğlu Oğuzhan et al. (2021-11)
    A Review of Printing-Strategies, Sustainable Cementitious Materials and Characterization Methods in the Context of Extrusion-Based 3D Concrete Printing
  5. Chen Yuning, Jia Lutao, Liu Chao, Zhang Zedi et al. (2022-01)
    Mechanical Anisotropy Evolution of 3D Printed Alkali-Activated Materials with Different GGBFS-FA Combinations
  6. Feng Peng, Meng Xinmiao, Chen Jian-Fei, Ye Lieping (2015-06)
    Mechanical Properties of Structures 3D Printed with Cementitious Powders
  7. Kajzr Daniel, Myslivec Tomáš, Černohorský Josef (2024-05)
    Modelling, Analysis and Comparison of Robot Energy Consumption for Three-Dimensional Concrete Printing Technology
  8. Li Shuai, Corelli Jaide, Tran Jonathan, Fan Linhua (2025-09)
    3D Printable Cellulose Concrete:
    A Review and Pathway to Future Research
  9. Li Shuai, Lan Tian, Nguyen Hung-Xuan, Tran Jonathan (2024-10)
    Frontiers in Construction 3D Printing:
    Self-Monitoring, Multi-Robot, Drone-Assisted Processes
  10. Li Shuai, Liu Junli, Cheng Chi-Tsun, Xuan Hung et al. (2025-06)
    Design and Performance of 3D Printed Bouligand Steel Fiber-Reinforced Cementitious Composite Curved Beams
  11. Li Leo, Xiao Bofeng, Fang Z., Xiong Z. et al. (2020-11)
    Feasibility of Glass-Basalt Fiber-Reinforced Seawater Coral Sand Mortar for 3D Printing
  12. Liu Junli, Haikola Pirjo, Fox Kate, Tran Jonathan (2024-06)
    3D Printing of Cementitious Composites with Seashell-Particles:
    Mechanical and Microstructural Analysis
  13. Liu Junli, Li Shuai, Fox Kate, Tran Jonathan (2021-12)
    3D Concrete Printing of Bio-Inspired Bouligand Structure:
    A Study on Impact-Resistance
  14. Liu Junli, Li Shuai, Gunasekara Chamila, Fox Kate et al. (2021-11)
    3D Printed Concrete with Recycled Glass:
    Effect of Glass Gradation on Flexural Strength and Microstructure
  15. Liu Junli, Nguyen Vuong, Panda Biranchi, Fox Kate et al. (2022-02)
    Additive Manufacturing of Sustainable Construction Materials and Form-Finding Structures:
    A Review on Recent Progresses
  16. Liu Junli, Setunge Sujeeva, Tran Jonathan (2022-07)
    3D Concrete Printing with Cement-Coated Recycled Crumb Rubber:
    Compressive and Microstructural Properties
  17. Liu Junli, Tran Jonathan, Nguyen Vuong, Gunasekara Chamila et al. (2023-06)
    3D Printing of Cementitious Mortar with Milled Recycled Carbon-Fibers:
    Influences of Filament Offset on Mechanical Properties
  18. Liu Chao, Zhang Yamei, Banthia Nemkumar (2023-05)
    Unveiling Pore Formation and Its Influence on Micromechanical Property and Stress-Distribution of 3D Printed Foam-Concrete Modified with Hydroxypropyl-Methylcellulose and Silica-Fume
  19. Luhar Salmabanu, Suntharalingam Thadshajini, Navaratnam Satheeskumar, Luhar Ismail et al. (2020-12)
    Sustainable and Renewable Bio-Based Natural Fibers and Its Application for 3D Printed Concrete:
    A Review
  20. Maroszek Marcin, Hager Izabela, Mróz Katarzyna, Sitarz Mateusz et al. (2025-08)
    Anisotropy of Mechanical Properties of 3D-Printed Materials:
    Influence of Application Time of Subsequent Layers
  21. Mechtcherine Viktor, Bos Freek, Perrot Arnaud, Silva Wilson et al. (2020-03)
    Extrusion-Based Additive Manufacturing with Cement-Based Materials:
    Production Steps, Processes, and Their Underlying Physics
  22. Rahman Mahfuzur, Rawat Sanket, Yang Chunhui, Mahil Ahmed et al. (2024-05)
    A Comprehensive Review on Fresh and Rheological Properties of 3D Printable Cementitious Composites
  23. Rajeev Pathmanathan, Ramesh Akilesh, Navaratnam Satheeskumar, Sanjayan Jay (2023-04)
    Using Fiber Recovered from Face Mask Waste to Improve Printability in 3D Concrete Printing
  24. Šinka Māris, Spuriņa Ella, Korjakins Aleksandrs, Bajāre Diāna (2022-09)
    Hempcrete:
    CO2 Neutral Wall Solutions for 3D Printing
  25. Sun Hou-Qi, Zeng Jun-Jie, Hong Guang-Yao, Zhuge Yan et al. (2025-01)
    3D Printed Functionally Graded Concrete Plates:
    Concept and Bending Behavior
  26. Sun Bochao, Zeng Qiang, Wang Dianchao, Zhao Weijian (2022-10)
    Sustainable 3D Printed Mortar with CO2 Pretreated Recycled Fine Aggregates
  27. Surehali Sahil, Tripathi Avinaya, Neithalath Narayanan (2023-08)
    Anisotropy in Additively Manufactured Concrete Specimens Under Compressive Loading:
    Quantification of the Effects of Layer-Height and Fiber-Reinforcement
  28. Tay Yi, Qian Ye, Tan Ming (2019-05)
    Printability-Region for 3D Concrete Printing Using Slump- and Slump-Flow-Test
  29. Xiao Jianzhuang, Liu Haoran, Ding Tao (2020-11)
    Finite-Element-Analysis on the Anisotropic Behavior of 3D Printed Concrete under Compression and Flexure
  30. Ye Junhong, Cui Can, Yu Jiangtao, Yu Kequan et al. (2021-02)
    Effect of Polyethylene-Fiber Content on Workability and Mechanical-Anisotropic Properties of 3D Printed Ultra-High-Ductile Concrete
  31. Zhao Yasong, Gao Yangyunzhi, Chen Gaofeng, Li Shujun et al. (2023-04)
    Development of Low-Carbon Materials from GGBS and Clay-Brick-Powder for 3D Concrete Printing

0 Citations

BibTeX
@article{ngo_li_huyn_zhan.2025.3PHC,
  author            = "Than Ha Ngo and Shuai Li and Tien Huynh and Y. X. Zhang and Jonathan Phuong Tran",
  title             = "3D Printable Hemp Concrete: Rheological, Mechanical, and Microstructural Properties",
  doi               = "10.1016/j.jobe.2025.114467",
  year              = "2025",
  journal           = "Journal of Building Engineering",
  pages             = "114467",
}
Formatted Citation

T. H. Ngo, S. Li, T. Huynh, Y. X. Zhang and J. P. Tran, “3D Printable Hemp Concrete: Rheological, Mechanical, and Microstructural Properties”, Journal of Building Engineering, p. 114467, 2025, doi: 10.1016/j.jobe.2025.114467.

Ngo, Than Ha, Shuai Li, Tien Huynh, Y. X. Zhang, and Jonathan Phuong Tran. “3D Printable Hemp Concrete: Rheological, Mechanical, and Microstructural Properties”. Journal of Building Engineering, 2025, 114467. https://doi.org/10.1016/j.jobe.2025.114467.