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Flexural and Shear Behavior of 3D Printed Reinforced Concrete Beams (2023-04)

An Experimental Study

10.9744/ced.25.1.1-9

Budiman Franky,  Chandra Jimmy, Halim Alvin,  Pudjisuryadi Pamuda
Journal Article - Civil Engineering Dimension, Vol. 25, Iss. 1, pp. 1-9

Abstract

3D Concrete Printing (3DCP) provides many advantages for construction industry especially on productivity, waste, labor, and environment. Many researches have been conducted on the material development for 3DCP. However, there are not many researches which study the structural behavior of 3DCP. This experimental research aims to analyze flexural and shear behavior of 3D printed reinforced concrete beams. Five longitudinal reinforcement ratios were used to analyze crack patterns, failure mode, ductility, and capacity of those beams. The experimental results were then compared with analytical results by using ACI design code. The results show that higher longitudinal reinforcement ratio yields higher flexural and shear capacity of 3DCP beams. Due to layer-by-layer printing process, 3DCP beams are prone to local failure of filaments. Placement of longitudinal reinforcement might initiate macroscopic voids which could cause slippage and sudden drop on the capacity. Furthermore, ACI code underestimates the capacity of 3DCP beams failing in shear by some margins.

13 References

  1. Asprone Domenico, Auricchio Ferdinando, Menna Costantino, Mercuri Valentina (2018-03)
    3D Printing of Reinforced Concrete Elements:
    Technology and Design Approach
  2. Baz Bilal, Aouad Georges, Leblond Philippe, Mansouri Omar et al. (2020-05)
    Mechanical Assessment of Concrete:
    Steel Bonding in 3D Printed Elements
  3. Chaar Ghassan, Stynoski Peter, Banko Marion (2018-11)
    Structural Behavior of Layer-Printed Reinforced Concrete Beams
  4. Ding Tao, Qin Fei, Xiao Jianzhuang, Chen Xiaoming et al. (2022-01)
    Experimental Study on the Bond Behavior Between Steel-Bars and 3D Printed Concrete
  5. Gebhard Lukas, Mata-Falcón Jaime, Anton Ana-Maria, Dillenburger Benjamin et al. (2021-04)
    Structural Behavior of 3D Printed Concrete Beams with Various Reinforcement-Strategies
  6. Le Thanh, Austin Simon, Lim Sungwoo, Buswell Richard et al. (2012-01)
    Hardened Properties of High-Performance Printing Concrete
  7. Ma Guowei, Li Zhijian, Wang Li, Bai Gang (2018-10)
    Micro-Cable-Reinforced Geopolymer Composite for Extrusion-Based 3D Printing
  8. Rahul Attupurathu, Santhanam Manu, Meena Hitesh, Ghani Zimam (2019-08)
    Mechanical Characterization of 3D Printable Concrete
  9. Sanjayan Jay, Nematollahi Behzad, Xia Ming, Marchment Taylor (2018-04)
    Effect of Surface Moisture on Inter-Layer Strength of 3D Printed Concrete
  10. Schuldt Steven, Jagoda Jeneé, Hoisington Andrew, Delorit Justin (2021-03)
    A Systematic Review and Analysis of the Viability of 3D Printed Construction in Remote Environments
  11. Sun Xiaoyan, Ye Boxing, Lin Kangjian, Wang Hailong (2021-12)
    Shear-Performance of 3D Printed Concrete Reinforced with Flexible or Rigid Materials Based on Direct-Shear-Test
  12. Wang Hailong, Shao Jianwen, Zhang Jing, Zou Daoqin et al. (2021-11)
    Bond Shear Performances and Constitutive Model of Interfaces Between Vertical and Horizontal Filaments of 3D Printed Concrete
  13. Wolfs Robert, Bos Freek, Salet Theo (2019-03)
    Hardened Properties of 3D Printed Concrete:
    The Influence of Process Parameters on Inter-Layer Adhesion

0 Citations

BibTeX
@article{budi_chan_hali_pudj.2023.FaSBo3PRCB,
  author            = "Franky Budiman and Jimmy Chandra and Alvin Halim and Pamuda Pudjisuryadi",
  title             = "Flexural and Shear Behavior of 3D Printed Reinforced Concrete Beams: An Experimental Study",
  doi               = "10.9744/ced.25.1.1-9",
  year              = "2023",
  journal           = "Civil Engineering Dimension",
  volume            = "25",
  number            = "1",
  pages             = "1--9",
}
Formatted Citation

F. Budiman, J. Chandra, A. Halim and P. Pudjisuryadi, “Flexural and Shear Behavior of 3D Printed Reinforced Concrete Beams: An Experimental Study”, Civil Engineering Dimension, vol. 25, no. 1, pp. 1–9, 2023, doi: 10.9744/ced.25.1.1-9.

Budiman, Franky, Jimmy Chandra, Alvin Halim, and Pamuda Pudjisuryadi. “Flexural and Shear Behavior of 3D Printed Reinforced Concrete Beams: An Experimental Study”. Civil Engineering Dimension 25, no. 1 (2023): 1–9. https://doi.org/10.9744/ced.25.1.1-9.