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Understanding and Modeling the Plastic Deformation of 3D Printed Concrete Based on Viscoelastic Creep Behavior (2024-04)

10.1016/j.addma.2024.104132

Xia Kailun,  Chen Yuning,  Chen Yu,  Jia Zijian, Jia Lutao, Gao Yueyi,  Zhang Yamei
Journal Article - Additive Manufacturing, No. 104132

Abstract

3D printing concrete (3DPC) is susceptible to plastic deformation, for example, plastic shrinkage and plastic settlement, due to the absence of formwork. Monitoring and determining plastic deformation of 3DPC in large-scale construction remains challenging. In this study, we developed an analytical modeling method for predicting plastic deformation based on the creep behavior of 3DPC. A new creep model with high fitting accuracy was proposed for capturing creep characteristics over different resting time and applied stress level. Feasible acquisition of model parameters was achieved by correlating creep test results with UUCT (unconfined uniaxial compressive test) results. A multi-parameter modeling procedure based on superposition principle was then developed, and further validated by experimental results. This research may contribute to a better understanding and assessment of the plastic deformation of 3DPC in digital construction.

22 References

  1. Chen Yuning, Jia Lutao, Liu Chao, Zhang Zedi et al. (2022-01)
    Mechanical Anisotropy Evolution of 3D Printed Alkali-Activated Materials with Different GGBFS-FA Combinations
  2. Esposito Laura, Casagrande Lorenzo, Menna Costantino, Asprone Domenico et al. (2021-10)
    Early-Age Creep Behavior of 3D Printable Mortars:
    Experimental Characterisation and Analytical Modelling
  3. Ghourchian Sadegh, Butler Marko, Krüger Markus, Mechtcherine Viktor (2021-04)
    Modelling the Development of Capillary Pressure in Freshly 3D Printed Concrete Elements
  4. Guo Xiaolu, Yang Junyi, Xiong Guiyan (2020-09)
    Influence of Supplementary Cementitious Materials on Rheological Properties of 3D Printed Fly-Ash-Based Geopolymer
  5. Kruger Jacques, Westhuizen Jean-Pierré (2023-03)
    Investigating the Poisson Ratio of 3D Printed Concrete
  6. Liu Chao, Wang Xianggang, Chen Yuning, Zhang Chao et al. (2021-06)
    Influence of Hydroxypropyl-Methylcellulose and Silica-Fume on Stability, Rheological Properties, and Printability of 3D Printing Foam-Concrete
  7. Moelich Gerrit, Kruger Jacques, Combrinck Riaan (2020-08)
    Plastic Shrinkage Cracking in 3D Printed Concrete
  8. Moelich Gerrit, Kruger Jacques, Combrinck Riaan (2022-04)
    A Plastic Shrinkage Cracking-Risk-Model for 3D Printed Concrete Exposed to Different Environments
  9. Moelich Gerrit, Kruger Jacques, Combrinck Riaan (2022-06)
    Mitigating Early-Age Cracking in 3D Printed Concrete Using Fibers, Superabsorbent Polymers, Shrinkage Reducing Admixtures, B-CSA Cement and Curing Measures
  10. Perrot Arnaud, Rangeard Damien, Pierre Alexandre (2015-02)
    Structural Build-Up of Cement-Based Materials Used for 3D Printing-Extrusion-Techniques
  11. Qian Ye, Kawashima Shiho (2016-09)
    Use of Creep Recovery Protocol to Measure Static Yield-Stress and Structural Rebuilding of Fresh Cement-Pastes
  12. Rehman Atta, Kim Jung-Hoon (2021-07)
    3D Concrete Printing:
    A Systematic Review of Rheology, Mix Designs, Mechanical, Microstructural, and Durability Characteristics
  13. Roussel Nicolas (2018-05)
    Rheological Requirements for Printable Concretes
  14. Sanjayan Jay, Nematollahi Behzad, Xia Ming, Marchment Taylor (2018-04)
    Effect of Surface Moisture on Inter-Layer Strength of 3D Printed Concrete
  15. Sanjayan Jay, Nematollahi Behzad, Xia Ming, Marchment Taylor (2021-06)
    Effect of Surface Moisture on Inter-Layer Strength of 3D Printed Concrete:
    Correction
  16. Suiker Akke, Wolfs Robert, Lucas Sandra, Salet Theo (2020-06)
    Elastic Buckling and Plastic Collapse During 3D Concrete Printing
  17. Wang Xianggang, Jia Lutao, Jia Zijian, Zhang Chao et al. (2022-06)
    Optimization of 3D Printing Concrete with Coarse Aggregate via Proper Mix-Design and Printing-Process
  18. Wangler Timothy, Roussel Nicolas, Bos Freek, Salet Theo et al. (2019-06)
    Digital Concrete:
    A Review
  19. Wolfs Robert, Bos Freek, Salet Theo (2018-02)
    Early-Age Mechanical Behaviour of 3D Printed Concrete:
    Numerical Modelling and Experimental Testing
  20. Xiao Jianzhuang, Ji Guangchao, Zhang Yamei, Ma Guowei et al. (2021-06)
    Large-Scale 3D Printing Concrete Technology:
    Current Status and Future Opportunities
  21. Zhang Chao, Jia Zijian, Wang Xianggang, Jia Lutao et al. (2022-05)
    A Two-Phase Design-Strategy Based on the Composite of Mortar and Coarse Aggregate for 3D Printable Concrete with Coarse Aggregate
  22. Zhang Hanghua, Xiao Jianzhuang (2021-08)
    Plastic Shrinkage and Cracking of 3D Printed Mortar with Recycled Sand

12 Citations

  1. Saravanan Pradeep, Ramaswamy Ananth (2025-11)
    Modelling Buildability Performance of 3D Printable Cementitious Materials Using Chemo-Mechanical Model
  2. Xia Kailun, Chen Yuning, Jia Lutao, Quan Shitao et al. (2025-10)
    The Impact of Internal Stress Generated During the Printing Process on the Early-Age Properties of 3D Printed Concrete
  3. Yang Rijiao, Xu Chengji, You Xiufei, Li Xinze et al. (2025-09)
    Saddle Stitching-Enabled Interfacial Toughening in 3D Printed Concrete
  4. Li Leo, Fei Zuojie, Jiao Chujie, Luo Tao et al. (2025-09)
    Bauxite Residue-Based 3D Printing Mortar:
    Enhancing Performance and Sustainability Through the Paste Replacement Approach
  5. Sando Mona, Stephan Dietmar (2025-07)
    Online Monitoring for 3D Printable Geopolymers:
    Automated Slug Test Analysis with Image Analysis Revealing Mixing Sequence Effects
  6. Chen Qinbin, Barbat Gabriel, Cervera Miguel (2025-06)
    Finite Element Buildability Analysis of 3D Printed Concrete Including Failure by Elastic Buckling and Plastic Flow
  7. Gribonval Alice, Pierre Maxime, Ducoulombier Nicolas, Sab Karam et al. (2025-05)
    Multi-Physics Modelling of 3D-Printed Concrete Evolution in Environmental Conditions
  8. Jia Lutao, Dong Enlai, Xia Kailun, Niu Geng et al. (2025-04)
    Initial Plastic Shrinkage of 3D-Printed Concrete Incorporating Recycled Brick Fine Aggregates:
    Insights from Water Transport and Structural Evolution
  9. Zhang Yuying, Zhu Xiaohong, Li Muduo, Zhang Chao et al. (2025-04)
    3D Printing Technology in Concrete Construction
  10. Sando Mona, Stephan Dietmar (2025-02)
    The Role of Mixing Sequence in Shaping the 3D-Printability of Geopolymers
  11. Lim Sean, Tan Ming (2024-10)
    A Rheological Model for Concrete Additive Manufacturing
  12. Chen Yuning, Xia Kailun, Dong Enlai, Cao Ruilin et al. (2024-10)
    A Mechanical Characteristic Capture-Method Considering Printing-Configurations for Buildability-Modeling in Concrete 3D Printing

BibTeX
@article{xia_chen_chen_jia.2024.UaMtPDo3PCBoVCB,
  author            = "Kailun Xia and Yuning Chen and Yu Chen and Zijian Jia and Lutao Jia and Yueyi Gao and Yamei Zhang",
  title             = "Understanding and Modeling the Plastic Deformation of 3D Printed Concrete Based on Viscoelastic Creep Behavior",
  doi               = "10.1016/j.addma.2024.104132",
  year              = "2024",
  journal           = "Additive Manufacturing",
  pages             = "104132",
}
Formatted Citation

K. Xia, “Understanding and Modeling the Plastic Deformation of 3D Printed Concrete Based on Viscoelastic Creep Behavior”, Additive Manufacturing, p. 104132, 2024, doi: 10.1016/j.addma.2024.104132.

Xia, Kailun, Yuning Chen, Yu Chen, Zijian Jia, Lutao Jia, Yueyi Gao, and Yamei Zhang. “Understanding and Modeling the Plastic Deformation of 3D Printed Concrete Based on Viscoelastic Creep Behavior”. Additive Manufacturing, 2024, 104132. https://doi.org/10.1016/j.addma.2024.104132.