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Additive Construction in Practice (2024-09)

Realities of Acceptance Criteria

10.1016/j.cemconres.2024.107652

 Kreiger Megan,  Kreiger Eric, Mansour Stephan,  Monkman Sean,  Delavar Mohammad,  Sideris Petros,  Roberts Casey,  Friedell Matthew,  Platt Shawn,  Jones Scott
Journal Article - Cement and Concrete Research, Vol. 186, No. 107652

Abstract

Additive Construction has increased dramatically within the United States in the last few years. Efforts to develop acceptance criteria have increased since 2020 and are being developed through integration of research efforts and early engagement with partners across academia, industry, and government. This review paper builds on the work by Bos et al. (2022) through addressing gaps identified and outlines developments within the United States through engagements with the international community to align experts within the field towards common goals, acceptance criteria, and the early integration of acceptance criteria with lessons learned for Additive Construction in practice.

18 References

  1. Afarani Hajar, Moser Newell, Garboczi Edward, Esfahani Ebrahim et al. (2022-03)
    Print Fidelity Metrics for Additive Manufacturing of Cement-Based Materials
  2. Bello Nicholas, Memari Ali (2022-12)
    Comparative Review of the Technology and Case Studies of 3D Concrete Printing of Buildings by Several Companies
  3. Bos Freek, Menna Costantino, Pradena Mauricio, Kreiger Eric et al. (2022-03)
    The Realities of Additively Manufactured Concrete Structures in Practice
  4. Delavar Mohammad, Chen H., Sideris Petros (2024-01)
    Analysis and Design of 3D Printed Reinforced Concrete Walls Under In-Plane Quasi-Static Loading
  5. Gamage Kumari, Fawzia Sabrina, Zahra Tatheer, Teixeira Muge et al. (2024-02)
    Advancement in Sustainable 3D Concrete Printing:
    A Review on Materials, Challenges, and Current Progress in Australia
  6. Jagoda Jeneé, Diggs-McGee Brandy, Kreiger Megan, Schuldt Steven (2020-04)
    The Viability and Simplicity of 3D Printed Construction:
    A Military Case Study
  7. Khoshnevis Behrokh, Dutton Rosanne (1998-01)
    Innovative Rapid Prototyping Process Makes Large-Sized, Smooth-Surfaced Complex Shapes in a Wide Variety of Materials
  8. Kreiger Eric, Diggs-McGee Brandy, Wood Tanner, MacAllister Bruce et al. (2020-07)
    Field Considerations for Deploying Additive Construction
  9. Kreiger Eric, Kreiger Megan, Case Michael (2019-04)
    Development of the Construction Processes for Reinforced Additively Constructed Concrete
  10. Lyu Fuyan, Zhao Dongliang, Hou Xiaohui, Sun Li et al. (2021-10)
    Overview of the Development of 3D Printing Concrete:
    A Review
  11. Ma Guowei, Buswell Richard, Silva Wilson, Wang Li et al. (2022-03)
    Technology Readiness:
    A Global Snapshot of 3D Concrete Printing and the Frontiers for Development
  12. Mechtcherine Viktor, Tittelboom Kim, Kazemian Ali, Kreiger Eric et al. (2022-04)
    A Roadmap for Quality-Control of Hardening and Hardened Printed Concrete
  13. Negron-McFarlane Christian, Kreiger Eric, Barna Lynette, Stynoski Peter et al. (2024-04)
    Development of In-Place Test-Methods for Evaluating Printable Concretes
  14. Panda Biranchi, Shakor Pshtiwan, Laghi Vittoria (2023-12)
    Shotcrete Additive Manufacturing
  15. Pegna Joseph (1997-02)
    Exploratory Investigation of Solid Freeform Construction
  16. 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
  17. Tu Haidong, Wei Zhenyun, Bahrami Alireza, Kahla Nabil et al. (2023-06)
    Recent Advancements and Future Trends in 3D Printing Concrete Using Waste-Materials
  18. Wang Brydon, Rimmer Matthew (2021-01)
    3D Printing and Housing:
    Intellectual Property and Construction Law

12 Citations

  1. Federowicz Karol, Sibera Daniel, Tošić Nikola, Zieliński Adam et al. (2026-01)
    Early-Age Shrinkage Monitoring of 3D-Printed Cementitious Mixtures: Comparison of Measuring Techniques and Low-Cost Alternatives
  2. Diggs-McGee Brandy, Samouh Hamza, Garg Nishant (2025-11)
    Predicting Cementitious Set Times via Infrared Thermography:
    Potential Implications on Real-Time Quality Control During 3D Concrete Printing
  3. Kim Young, Scoppa Martin, Haddad Madhar (2025-10)
    An Investigation into the Role of 3D Printing in Residential Buildings:
    An Emirati Housing Case Study
  4. Zhang Chao, Zhu Xiaohong, Li Muduo, Zhang Yuying et al. (2025-10)
    Enhancing Interface Adhesion of 3D Printable Concrete by Biochar Integration
  5. Yerikania Utami, Du Hongjian, Poh Leong (2025-07)
    A Comprehensive Experimental Investigation of Anisotropy Behavior on Highly Carbon-Minimized 3D Printed Concrete
  6. 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)
  7. Dey Dhrutiman, Panda Biranchi, Shukla Yash, Rawal Rajan (2025-03)
    A Comprehensive Assessment of Thermal Performance of 3D Printed Concrete Lattice Walls
  8. Sharma Shivam, Tahlawi M., Delavar Mohammad, Sideris Petros (2025-03)
    Structural Design Methodology for Low-Rise 3D Printed Concrete (3DPC) Buildings Subjected to Non-Seismic Loading:
    Description, Application and Validation
  9. Vasilić Ksenija (2025-02)
    Standardization Aspects of Concrete 3D Printing
  10. Hanžič Lucija, Štefančič Mateja, Šter Katarina, Zalar Serjun Vesna et al. (2025-01)
    Collision Milling of Oil Shale Ash as Constituent Pretreatment in Concrete 3D Printing
  11. Li Chao, Petzold Frank (2025-01)
    Ontology-Driven Mixture-of-Domain Documentation:
    A Backbone Approach Enabling Question Answering for Additive Construction
  12. Wolfs Robert (2024-09)
    The Status Quo of 3D Concrete Printing:
    Are We There Yet?

BibTeX
@article{krei_krei_mans_monk.2024.ACiP,
  author            = "Megan A. Kreiger and Eric L. Kreiger and Stephan Mansour and Sean Monkman and Mohammad Aghajani Delavar and Petros Sideris and Casey Roberts and Matthew Friedell and Shawn L. Platt and Scott Z. Jones",
  title             = "Additive Construction in Practice: Realities of Acceptance Criteria",
  doi               = "10.1016/j.cemconres.2024.107652",
  year              = "2024",
  journal           = "Cement and Concrete Research",
  volume            = "186",
  pages             = "107652",
}
Formatted Citation

M. A. Kreiger, “Additive Construction in Practice: Realities of Acceptance Criteria”, Cement and Concrete Research, vol. 186, p. 107652, 2024, doi: 10.1016/j.cemconres.2024.107652.

Kreiger, Megan A., Eric L. Kreiger, Stephan Mansour, Sean Monkman, Mohammad Aghajani Delavar, Petros Sideris, Casey Roberts, Matthew Friedell, Shawn L. Platt, and Scott Z. Jones. “Additive Construction in Practice: Realities of Acceptance Criteria”. Cement and Concrete Research 186 (2024): 107652. https://doi.org/10.1016/j.cemconres.2024.107652.