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Print Time vs. Elapsed Time (2019-04)

A Temporal Analysis of a Continuous Printing Operation for Additive Constructed Concrete

10.1016/j.addma.2019.04.008

 Diggs-McGee Brandy,  Kreiger Eric,  Kreiger Megan, Case Michael
Journal Article - Additive Manufacturing, Vol. 28, pp. 205-214

Abstract

In additive construction, ambitious goals to fabricate a concrete building in less than 24 h are attempted. In the field, this goal relies on a metric of print time to make this conclusion, which excludes rest time and delays. The task to complete a building in 24 h was put to the test with the first attempt at a fully continuous print of a structurally reinforced additively constructed concrete (ACC) building. A time series analysis was performed on the events during the construction of a 512 ft2 (16 ft x 32 ft x 9.25 ft) building to explore the effect of delays on the completion time. This analysis included a study of the variation in comprehensive layer print times, expected trends and forecasting for what is expected in future prints of similar types. Furthermore, the study included a determination and comparison of print time, elapsed time and construction time, as well as a look at the effect of environmental conditions on the delay events. Upon finishing, the analysis concluded that the 3D printed building was completed in 14-hours of print time, 31.2-hours elapsed time, or a total of 5 days of construction time. This emphasizes that reports on newly 3D printed constructions need to provide a definition of time that includes all possible duration periods to communicate realistic capabilities of this new technology.

14 References

  1. Asprone Domenico, Auricchio Ferdinando, Menna Costantino, Mercuri Valentina (2018-03)
    3D Printing of Reinforced Concrete Elements:
    Technology and Design Approach
  2. Buswell Richard, Silva Wilson, Jones Scott, Dirrenberger Justin (2018-06)
    3D Printing Using Concrete-Extrusion:
    A Roadmap for Research
  3. Kreiger Eric, Kreiger Megan, Case Michael (2019-04)
    Development of the Construction Processes for Reinforced Additively Constructed Concrete
  4. Le Thanh, Austin Simon, Lim Sungwoo, Buswell Richard et al. (2012-01)
    Mix-Design and Fresh Properties for High-Performance Printing Concrete
  5. Malaeb Zeina, Sakka Fatima, Hamzeh Farook (2019-02)
    3D Concrete Printing:
    Machine Design, Mix Proportioning, and Mix Comparison Between Different Machine Setups
  6. Panda Biranchi, Unluer Cise, Tan Ming (2018-10)
    Investigation of the Rheology and Strength of Geopolymer Mixtures for Extrusion-Based 3D Printing
  7. Perrot Arnaud, Rangeard Damien, Pierre Alexandre (2015-02)
    Structural Build-Up of Cement-Based Materials Used for 3D Printing-Extrusion-Techniques
  8. Roussel Nicolas (2018-05)
    Rheological Requirements for Printable Concretes
  9. Rushing Todd, Chaar Ghassan, Eick Brian, Burroughs Jedadiah et al. (2017-01)
    Investigation of Concrete Mixtures for Additive Construction
  10. Suiker Akke (2018-01)
    Mechanical Performance of Wall Structures in 3D Printing Processes:
    Theory, Design Tools and Experiments
  11. Tay Yi, Panda Biranchi, Paul Suvash, Mohamed Nisar et al. (2017-05)
    3D Printing Trends in Building and Construction Industry:
    A Review
  12. Wangler Timothy, Lloret-Fritschi Ena, Reiter Lex, Hack Norman et al. (2016-10)
    Digital Concrete:
    Opportunities and Challenges
  13. Wolfs Robert, Bos Freek, Salet Theo (2018-02)
    Early-Age Mechanical Behaviour of 3D Printed Concrete:
    Numerical Modelling and Experimental Testing
  14. Zhang Xu, Li Mingyang, Lim Jian, Weng Yiwei et al. (2018-08)
    Large-Scale 3D Printing by a Team of Mobile Robots

58 Citations

  1. Nguyen Trang, Park Jaejun, Kim Dong-Hyun (2025-11)
    Impacts of Infill Patterns and Curve Types in 3D Printed Clay Walls
  2. Sahu Akshay, Panda Biranchi (2025-11)
    An Additive Manufacturing-Oriented Design Approach for Digital Construction
  3. Barbhuiya Salim, Das Bibhuti, Adak Dibyendu (2025-09)
    Key Variables Influencing the Performance of 3D Printed Concrete:
    A Comprehensive Analysis
  4. Zhu Jinggao, Cervera Miguel, Ren Xiaodan (2025-04)
    Peridynamic Anisotropic Behavior Analysis of 3D-Printed Concrete Structures
  5. Huang Junxiang, Peng Zeqin, Tan Xianzhong, Gong Guofang et al. (2024-12)
    Mechanism Analysis of the Magnetic Field-Assisted 3D Printed Steel-Fiber-Reinforced Concrete
  6. Khan Mirza, Ahmed Aayzaz, Ali Tariq, Qureshi Muhammad et al. (2024-12)
    Comprehensive Review of 3D Printed Concrete, Life Cycle Assessment, AI and ML Models:
    Materials, Engineered Properties and Techniques for Additive Manufacturing
  7. Lucas Sandra (2024-11)
    From 3D to 5D Printing:
    Additive Manufacturing of Functional Construction Materials
  8. Wagner Juliana, Silveira Marcos, Vanderlei Romel, Das Sreekanta (2024-10)
    Comparative Analysis of Mold-Cast and 3D Printed Cement-Based Components:
    Implications for Standardization in Additive Construction
  9. Raza Muhammad, Zhong Ray (2024-10)
    Integration of Additive Manufacturing, Lean and Green Construction:
    A Conceptual Framework
  10. Althoey Fadi, Zaid Osama, Ahmed Bilal, Elhadi Khaled (2024-10)
    Impact of Double Hooked Steel-Fibers and Nano-Kaolin-Clay on Fresh Properties of 3D Printable Ultra-High-Performance Fiber-Reinforced Concrete
  11. Kamhawi Abdallah, Meibodi Mania (2024-09)
    Techniques and Strategies in Extrusion-Based 3D Concrete Printing of Complex Components to Prevent Premature Failure
  12. Raza Muhammad, Besklubova Svetlana, Zhong Ray (2024-07)
    Economic Analysis of Offsite and Onsite 3D Construction Printing Techniques for Low-Story Buildings:
    A Comparative Value-Stream-Assessment
  13. An Dong, Zhang Yixia, Yang Chunhui (2024-05)
    Incorporating Coarse Aggregates into 3D Concrete Printing from Mixture Design and Process-Control to Structural Behavior and Practical Applications:
    A Review
  14. Zaid Osama, Ouni Mohamed (2024-04)
    Advancements in 3D Printing of Cementitious Materials:
    A Review of Mineral Additives, Properties, and Systematic Developments
  15. Yang Liuhua, Gao Yang, Chen Hui, Jiao Huazhe et al. (2024-04)
    3D Printing Concrete Technology from a Rheology Perspective:
    A Review
  16. Wang Xiaonan, Li Wengui, Guo Yipu, Kashani Alireza et al. (2024-02)
    Concrete 3D Printing Technology in Sustainable Construction:
    A Review on Raw Materials, Concrete Types and Performances
  17. Teng Fei, Li Mingyang, Zhang Dong, Li Heng et al. (2023-11)
    BIM-Enabled Collaborative-Robots 3D Concrete Printing to Construct MiC with Reinforcement
  18. Perez-Rivera Anthony, Kreiger Eric, Stidwell Samuel, Stynoski Peter et al. (2023-10)
    Finite-Element Modeling of Reinforced Additively Constructed Concrete Structures
  19. Akman Arabella, Sadhu Ayan (2023-10)
    Recent Development of 3D Printing Technology in Construction Engineering
  20. Cao Xiangpeng, Yu Shiheng, Cui Hongzhi, Li Zongjin (2023-07)
    In-Situ Coating Technique for Rebar Installation for 3D Printed Reinforced Concrete
  21. Tu Haidong, Wei Zhenyun, Bahrami Alireza, Kahla Nabil et al. (2023-06)
    Recent Advancements and Future Trends in 3D Printing Concrete Using Waste-Materials
  22. Shenawa Amaal, Karoti Poonam (2023-06)
    3D Printing in Construction, Mixture Characteristics, Strength, and Thermal Performance-Review
  23. Haar Bjorn, Kruger Jacques, Zijl Gideon (2023-05)
    Off-Site Construction with 3D Concrete Printing
  24. Chen Hao, Zhang Daobo, Chen Peng, Li Ning et al. (2023-03)
    A Review of the Extruder System Design for Large-Scale Extrusion-Based 3D Concrete Printing
  25. Bester Frederick, Kruger Jacques, Zijl Gideon (2023-03)
    Rivet Reinforcement for Concrete Printing
  26. Bazli Milad, Ashrafi Hamed, Rajabipour Ali, Kutay Cat (2023-02)
    3D Printing for Remote Housing:
    Benefits and Challenges
  27. Ahmed Ghafur (2023-01)
    A Review of 3D Concrete Printing:
    Materials and Process Characterization, Economic Considerations and Environmental Sustainability
  28. Nodehi Mehrab, Aguayo Federico, Nodehi Shahab, Gholampour Aliakbar et al. (2022-07)
    Durability Properties of 3D Printed Concrete
  29. Moini Mohamadreza, Olek Jan, Zavattieri Pablo, Youngblood Jeffrey (2022-04)
    Early-Age Buildability-Rheological Properties Relationship in Additively Manufactured Cement-Paste Hollow Cylinders
  30. Mo Yixin, Xing Jianchun, Yue Songlin, Zhang Yamei et al. (2022-04)
    Dynamic Properties of 3D Printed Cement Mortar Based on Split Hopkinson Pressure Bar Testing
  31. Pan Tinghong, Jiang Yaqing, Ji Xuping (2022-03)
    Inter-Layer Bonding Investigation of 3D Printing Cementitious Materials with Fluidity-Retaining Polycarboxylate-Superplasticizer and High-Dispersion Polycarboxylate Superplasticizer
  32. Wangler Timothy, Pileggi Rafael, Gürel Şeyma, Flatt Robert (2022-03)
    A Chemical Process Engineering Look at Digital Concrete Processes:
    Critical Step Design, In-Line Mixing, and Scale-Up
  33. Bos Freek, Menna Costantino, Pradena Mauricio, Kreiger Eric et al. (2022-03)
    The Realities of Additively Manufactured Concrete Structures in Practice
  34. Guamán-Rivera Robert, Martínez-Rocamora Alejandro, García-Alvarado Rodrigo, Muñoz-Sanguinetti Claudia et al. (2022-02)
    Recent Developments and Challenges of 3D Printed Construction:
    A Review of Research Fronts
  35. Diggs-McGee Brandy, Kreiger Eric (2021-12)
    Using Isolated Temporal Analysis to Aid in the Assessment of Structural Element Quality for Additive Construction
  36. Moini Mohamadreza, Olek Jan, Zavattieri Pablo, Youngblood Jeffrey (2021-12)
    Open-Span Printing Method for Assessment of Early-Age Deformations of Additively Manufactured Cement-Based Materials Using an Isosceles Triangle
  37. Stidwell Samuel, Kreiger Eric (2021-12)
    Determination of Mechanical Properties of Additively Constructed Concrete Based on Specimen-Orientation
  38. Mo Yixin, Yue Songlin, Zhou Qizhen, Feng Bowei et al. (2021-09)
    Dynamic Properties and Fractal Characteristics of 3D Printed Cement Mortar in SHPB-Test
  39. Khandelwal Vaatsuly, Bhatia Vibhav, Dogra Vinay, Sharma Shivam et al. (2021-08)
    3D Printer Robot for Civil Construction:
    A Bond Graph Approach
  40. Liu Chenkang, Yue Songlin, Zhou Cong, Sun Honglei et al. (2021-08)
    Anisotropic Mechanical Properties of Extrusion-Based 3D Printed Layered Concrete
  41. Kreiger Megan (2021-07)
    Go Big or Go Home:
    Printing Concrete Buildings
  42. Bhattacherjee Shantanu, Basavaraj Anusha, Rahul Attupurathu, Santhanam Manu et al. (2021-06)
    Sustainable Materials for 3D Concrete Printing
  43. Xiao Jianzhuang, Ji Guangchao, Zhang Yamei, Ma Guowei et al. (2021-06)
    Large-Scale 3D Printing Concrete Technology:
    Current Status and Future Opportunities
  44. Marchment Taylor, Sanjayan Jay (2021-04)
    Reinforcement Method for 3D Concrete Printing Using Paste-Coated Bar Penetrations
  45. Helsel Michelle, Popovics John, Stynoski Peter, Kreiger Eric (2021-03)
    Non-Destructive Testing to Characterize Inter-Layer Bonds of Idealized Concrete Additive Manufacturing Products
  46. 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
  47. Weng Yiwei, Mohamed Nisar, Lee Brian, Gan Nicole et al. (2021-02)
    Extracting BIM Information for Lattice Tool-Path-Planning in Digital Concrete Printing with Developed Dynamo Script:
    A Case Study
  48. Mechtcherine Viktor, Buswell Richard, Kloft Harald, Bos Freek et al. (2021-02)
    Integrating Reinforcement in Digital Fabrication with Concrete:
    A Review and Classification Framework
  49. Antoni Antoni, Widjaya David, Wibowo Alexander, Chandra Jimmy et al. (2020-12)
    Using Calcium Oxide and Accelerator to Control the Initial Setting-Time of Mortar in 3D Concrete Printing
  50. Kaszyńska Maria, Skibicki Szymon, Hoffmann Marcin (2020-12)
    3D Concrete Printing for Sustainable Construction
  51. Bester Frederick, Heever Marchant, Kruger Jacques, Zijl Gideon (2020-11)
    Reinforcing Digitally Fabricated Concrete:
    A Systems Approach Review
  52. Krotov Oleg, Lazarev Yuriy, Velichkin Viktor, Petrochenko Marina et al. (2020-11)
    The Multi-Storey Concrete Printing Construction Technology
  53. Mohan Manu, Rahul Attupurathu, Schutter Geert, Tittelboom Kim (2020-10)
    Extrusion-Based Concrete 3D Printing from a Material Perspective:
    A State of the Art Review
  54. Kruger Jacques, Zijl Gideon (2020-10)
    A Compendious Review on Lack-of-Fusion in Digital Concrete Fabrication
  55. Kreiger Eric, Diggs-McGee Brandy, Wood Tanner, MacAllister Bruce et al. (2020-07)
    Field Considerations for Deploying Additive Construction
  56. Jagoda Jeneé, Diggs-McGee Brandy, Kreiger Megan, Schuldt Steven (2020-04)
    The Viability and Simplicity of 3D Printed Construction:
    A Military Case Study
  57. Kontovourkis Odysseas, Tryfonos George (2019-11)
    Robotic 3D Clay Printing of Prefabricated Non-Conventional Wall Components Based on a Parametric-Integrated Design
  58. Marchment Taylor, Sanjayan Jay (2019-10)
    Mesh Reinforcing Method for 3D Concrete Printing

BibTeX
@article{digg_krei_krei_case.2019.PTvET,
  author            = "Brandy N. Diggs-McGee and Eric L. Kreiger and Megan A. Kreiger and Michael P. Case",
  title             = "Print Time vs. Elapsed Time: A Temporal Analysis of a Continuous Printing Operation for Additive Constructed Concrete",
  doi               = "10.1016/j.addma.2019.04.008",
  year              = "2019",
  journal           = "Additive Manufacturing",
  volume            = "28",
  pages             = "205--214",
}
Formatted Citation

B. N. Diggs-McGee, E. L. Kreiger, M. A. Kreiger and M. P. Case, “Print Time vs. Elapsed Time: A Temporal Analysis of a Continuous Printing Operation for Additive Constructed Concrete”, Additive Manufacturing, vol. 28, pp. 205–214, 2019, doi: 10.1016/j.addma.2019.04.008.

Diggs-McGee, Brandy N., Eric L. Kreiger, Megan A. Kreiger, and Michael P. Case. “Print Time Vs. Elapsed Time: A Temporal Analysis of a Continuous Printing Operation for Additive Constructed Concrete”. Additive Manufacturing 28 (2019): 205–14. https://doi.org/10.1016/j.addma.2019.04.008.