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From Printing to Performance (2025-05)

A Review on 3D Concrete Printing Processes, Materials, and Life Cycle Assessment

10.1007/s41024-025-00626-4

Mishra Sanjeet, Snehal K., Das B., Chandrasekaran Rajasekaran, Barbhuiya Salim
Journal Article - Journal of Building Pathology and Rehabilitation, Vol. 10, Iss. 2

Abstract

A paradigm shift in the construction sector has been driven by 3D concrete printing (3DCP), offering automated alternatives to conventional building methods. 3DCP enhances precision, efficiency, and consistency through robotic control and advanced printhead systems while reducing material waste and enabling design flexibility. This review examines the working principles, printer classifications (gantry-based and robotic arm-based), and operational parameters, highlighting printing speed, interlayer gap time, and nozzle size and shape as critical parameters for buildability, interlayer bonding, and extrusion quality. Their influence is discussed in relation to fresh properties (flowability, pumpability, extrudability, shape retention, and buildability) and hardened properties (compressive, tensile, and flexural strength, interlayer bonding, and durability). Mix design strategies for optimizing rheology, printability, and sustainable material selection are critically reviewed. Key durability concerns such as shrinkage, cracking, and weather resistance are addressed. Reinforcement methods, including steel bars, fibers, and embedment techniques, are also discussed. A life cycle analysis reveals that 3DCP reduces carbon dioxide emissions by up to 89.2% and construction costs by 30–40% through formwork elimination. Environmental impacts (waste generation, carbon footprint, and energy use) are assessed using regional and global data, considering embodied energy, transportation, and maintenance costs. Challenges such as regulatory hurdles, high initial investment, and the absence of standardized guidelines are identified. This review covers developments from the past decade, offering valuable insights for researchers, industry professionals, and policymakers regarding the advancements, limitations, and future directions of 3DCP.

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9 Citations

  1. Agegn Adamu, Regassa Yohannes, Angassa Kenatu, Mekonnen Kebede (2026-01)
    Systematic Review on 3D Concrete Printing Technology:
    Breakthroughs and Challenges
  2. Si Wen, Khan Mehran, McNally Ciaran (2025-11)
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  3. Akgümüş Fatih, Şahin Hatice, Mardani Ali (2025-10)
    Investigation of Waste Steel Fiber Usage Rate and Length Change on Some Fresh State Properties of 3D Printable Concrete Mixtures
  4. Tarhan Yeşim, Atalay Berrin (2025-09)
    Phosphogypsum and Borogypsum as Additives for Sustainable and High-Performance 3D-Printable Concrete
  5. Li Shiping, Sun Yan, Qian Ye, Chen Wujun et al. (2025-08)
    Bio-Inspired Bouligand Architectures for Enhanced Flexural Performance in 3D-Printed Strain-Hardening Cementitious Composites (3DP-SHCC)
  6. 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
  7. Ingle Vaibhav, Prem Prabhat (2025-07)
    Acoustic Emission Examination of 3D Printed Ultra-High Performance Concrete with and Without Coarse Aggregate Under Fresh and Hardened States
  8. Mishra Sanjeet, Upadhyay Bikash, Das Bibhuti (2025-06)
    3D Printing Aspects of Fly Ash and GGBS Admixed Binary and Ternary Blended Cementitious Mortar
  9. Mishra Sanjeet, Upadhyay Bikash, Das B. (2025-06)
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BibTeX
@article{mish_sneh_das_chan.2025.FPtP,
  author            = "Sanjeet Kumar Mishra and K. Snehal and B. B. Das and Rajasekaran Chandrasekaran and Salim Barbhuiya",
  title             = "From Printing to Performance: A Review on 3D Concrete Printing Processes, Materials, and Life Cycle Assessment",
  doi               = "10.1007/s41024-025-00626-4",
  year              = "2025",
  journal           = "Journal of Building Pathology and Rehabilitation",
  volume            = "10",
  number            = "2",
}
Formatted Citation

S. K. Mishra, K. Snehal, B. B. Das, R. Chandrasekaran and S. Barbhuiya, “From Printing to Performance: A Review on 3D Concrete Printing Processes, Materials, and Life Cycle Assessment”, Journal of Building Pathology and Rehabilitation, vol. 10, no. 2, 2025, doi: 10.1007/s41024-025-00626-4.

Mishra, Sanjeet Kumar, K. Snehal, B. B. Das, Rajasekaran Chandrasekaran, and Salim Barbhuiya. “From Printing to Performance: A Review on 3D Concrete Printing Processes, Materials, and Life Cycle Assessment”. Journal of Building Pathology and Rehabilitation 10, no. 2 (2025). https://doi.org/10.1007/s41024-025-00626-4.