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Effect of Inter-Layer-Time-Lapse and Workability-Retention on Printed Concrete Performance (2023-07)

10.1061/jmcee7.mteng-14515

 Ghosh Debalina,  Anleu Paula,  le Pape Yann, Ma Zhonggoue
Journal Article - Journal of Materials in Civil Engineering, Vol. 35, Iss. 10

Abstract

The rapid advancement of additive manufacturing technologies for concrete construction requires further understanding of material performance and its relationship with print parameters such as interlayer time-lapse and workability retention during the print. This study addresses the effects of the time delay between consecutive extruded layers on the mechanical performance of printed concrete using a mix designed by Quikrete. A series of specimens were prepared with printing delays of 10, 15, 30, and 60 min. This work correlates the change in fracture properties, mechanical performance, and workability retention with the interlayer time-lapse between two consecutive concrete layers. Interlayer time-lapse is defined as the time difference in printing of two consequent layers of concrete. It affects individual properties differently based on the loading direction and test types, but it is consistent in terms of interlayer performance. The understanding of the effect of interlayer time-lapse on the fracture properties between two consecutive printed layers fills the knowledge gaps in printed concrete research. Therefore, this study can help researchers perform required optimization and safely estimate the performance of printed concrete.

19 References

  1. Babafemi Adewumi, Kolawole John, Miah Md, Paul Suvash et al. (2021-06)
    A Concise Review on Inter-Layer Bond Strength in 3D Concrete Printing
  2. Ding Tao, Xiao Jianzhuang, Zou Shuai, Wang Yu (2020-06)
    Hardened Properties of Layered 3D Printed Concrete with Recycled Sand
  3. Geng Zifan, She Wei, Zuo Wenqiang, Lyu Kai et al. (2020-09)
    Layer-Interface Properties in 3D Printed Concrete:
    Dual Hierarchical Structure and Micromechanical Characterization
  4. Hager Izabela, Golonka Anna, Putanowicz Roman (2016-08)
    3D Printing of Buildings and Building Components as the Future of Sustainable Construction?
  5. Liu Chao, Zhang Rongfei, Liu Huawei, He Chunhui et al. (2021-11)
    Analysis of the Mechanical Performance and Damage Mechanism for 3D Printed Concrete Based on Pore-Structure
  6. Ma Guowei, Wang Li (2017-08)
    A Critical Review of Preparation Design and Workability Measurement of Concrete Material for Large-Scale 3D Printing
  7. Ma Guowei, Zhang Junfei, Wang Li, Li Zhijian et al. (2018-06)
    Mechanical Characterization of 3D Printed Anisotropic Cementitious Material by the Electromechanical Transducer
  8. Nerella Venkatesh, Hempel Simone, Mechtcherine Viktor (2019-02)
    Effects of Layer-Interface Properties on Mechanical Performance of Concrete Elements Produced by Extrusion-Based 3D Printing
  9. Panda Biranchi, Mohamed Nisar, Paul Suvash, Bhagath Singh Gangapatnam et al. (2019-07)
    The Effect of Material Fresh Properties and Process Parameters on Buildability and Inter-Layer Adhesion of 3D Printed Concrete
  10. Panda Biranchi, Paul Suvash, Tan Ming (2017-07)
    Anisotropic Mechanical Performance of 3D Printed Fiber-Reinforced Sustainable Construction-Material
  11. Papachristoforou Michail, Mitsopoulos Vasilios, Stefanidou Maria (2018-10)
    Evaluation of Workability Parameters in 3D Printing Concrete
  12. Sakin Mehmet, Kiroglu Yusuf (2017-10)
    3D Printing of Buildings:
    Construction of the Sustainable Houses of the Future by BIM
  13. Salet Theo, Ahmed Zeeshan, Bos Freek, Laagland Hans (2018-05)
    Design of a 3D Printed Concrete Bridge by Testing
  14. Siddika Ayesha, Mamun Md., Ferdous Wahid, Saha Ashish et al. (2019-12)
    3D Printed Concrete:
    Applications, Performance, and Challenges
  15. Wangler Timothy, Lloret-Fritschi Ena, Reiter Lex, Hack Norman et al. (2016-10)
    Digital Concrete:
    Opportunities and Challenges
  16. Wang Li, Ma Guowei, Liu Tianhao, Buswell Richard et al. (2021-07)
    Inter-Layer Reinforcement of 3D Printed Concrete by the In-Process Deposition of U-Nails
  17. Wolfs Robert, Bos Freek, Salet Theo (2019-03)
    Hardened Properties of 3D Printed Concrete:
    The Influence of Process Parameters on Inter-Layer Adhesion
  18. Wu Yun-Chen, Cotrell Jason, Li Mo (2020-07)
    Inter-Layer Effect on Fracture Behavior of 3D Printing Concrete
  19. Zhang Jingchuan, Wang Jialiang, Dong Sufen, Yu Xun et al. (2019-07)
    A Review of the Current Progress and Application of 3D Printed Concrete

6 Citations

  1. Davar Saeed, Ma Zhanguo (2025-11)
    Improving the Mechanical Performance of 3D-Printed UHPFRC with Thermally Modified Carbon Fibers
  2. 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
  3. Qi Pengfei, Wang Ziyuan, Yu Ruifang, Pei Qiang et al. (2025-05)
    Optimization Design and Regression Model Analysis of Mechanical Properties of 3D Printed Concrete
  4. Santhosh S., Raphael Benny, Santhanam Manu (2025-05)
    Concrete 3D Printing of Shape-Optimized Lattice Beams Incorporating Nature-Inspired Patterns
  5. Chourasia Ajay, Pal Biswajit, Kapoor Ashish (2025-02)
    Influence of Printing Direction and Interlayer Printing Time on the Bond Characteristics and Hardened Mechanical Properties of Agro-Industrial Waste-Based 3D Printed Concrete
  6. Sun Zhaoyang, Zhao Yuyang, Hou Dongshuai, Li Zongjin et al. (2024-11)
    Rheology-Control of Cement-Paste by In-Situ Polymerization for 3D Printing Applications

BibTeX
@article{ghos_anle_pape_ma.2023.EoILTLaWRoPCP,
  author            = "Debalina Ghosh and Paula Bran Anleu and Yann Le Pape and Zhonggoue John Ma",
  title             = "Effect of Inter-Layer-Time-Lapse and Workability-Retention on Printed Concrete Performance",
  doi               = "10.1061/jmcee7.mteng-14515",
  year              = "2023",
  journal           = "Journal of Materials in Civil Engineering",
  volume            = "35",
  number            = "10",
}
Formatted Citation

D. Ghosh, P. B. Anleu, Y. L. Pape and Z. J. Ma, “Effect of Inter-Layer-Time-Lapse and Workability-Retention on Printed Concrete Performance”, Journal of Materials in Civil Engineering, vol. 35, no. 10, 2023, doi: 10.1061/jmcee7.mteng-14515.

Ghosh, Debalina, Paula Bran Anleu, Yann Le Pape, and Zhonggoue John Ma. “Effect of Inter-Layer-Time-Lapse and Workability-Retention on Printed Concrete Performance”. Journal of Materials in Civil Engineering 35, no. 10 (2023). https://doi.org/10.1061/jmcee7.mteng-14515.