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Numerical Simulation of Multi-Layer 3D Concrete Printing (2021-10)

10.21809/rilemtechlett.2021.142

 Spangenberg Jon,  da Silva Wilson,  Comminal Raphaël,  Mollah Md., Andersen Thomas,  Stang Henrik
Journal Article - RILEM Technical Letters, Vol. 6, pp. 119-123

Abstract

This paper presents a computational fluid dynamics model fit for multi‐layer 3D Concrete Printing. The numerical model utilizes an elasto‐visco‐plastic constitutive model to mimic the flow behaviour of the cementitious material. To validate the model, simulation data is compared to experimental data from 3D printed walls. The obtained results show that the numerical model can reproduce the experimental results with a high accuracy and quantify the extrusion load imposed upon the layers. Such load is found to exceed the material’s yields stress in certain regions of previously printed layers, leading to layer deformation/flow. The developed and validated numerical model can assist in identifying optimal printing strategies, reducing the number of costly experimental print failures and human‐process interaction. By doing so, the findings of this paper help 3D Concrete Printing move a step closer to a truly digital fabrication process.

11 References

  1. Buswell Richard, Silva Wilson, Bos Freek, Schipper Roel et al. (2020-05)
    A Process Classification Framework for Defining and Describing Digital Fabrication with Concrete
  2. Buswell Richard, Silva Wilson, Jones Scott, Dirrenberger Justin (2018-06)
    3D Printing Using Concrete-Extrusion:
    A Roadmap for Research
  3. Comminal Raphaël, Silva Wilson, Andersen Thomas, Stang Henrik et al. (2020-07)
    Influence of Processing Parameters on the Layer Geometry in 3D Concrete Printing:
    Experiments and Modelling
  4. Comminal Raphaël, Silva Wilson, Andersen Thomas, Stang Henrik et al. (2020-10)
    Modelling of 3D Concrete Printing Based on Computational Fluid Dynamics
  5. Mechtcherine Viktor, Nerella Venkatesh, Will Frank, Näther Mathias et al. (2019-08)
    Large-Scale Digital Concrete Construction:
    CONPrint3D Concept for On-Site, Monolithic 3D Printing
  6. Nguyen Vuong, Panda Biranchi, Zhang Guomin, Nguyen-Xuan Hung et al. (2021-01)
    Digital Design Computing and Modelling for 3D Concrete Printing
  7. Paul Suvash, Zijl Gideon, Tan Ming, Gibson Ian (2018-05)
    A Review of 3D Concrete Printing Systems and Materials Properties:
    Current Status and Future Research Prospects
  8. Roussel Nicolas, Spangenberg Jon, Wallevik Jon, Wolfs Robert (2020-06)
    Numerical Simulations of Concrete Processing:
    From Standard Formative Casting to Additive Manufacturing
  9. Wolfs Robert, Bos Freek, Salet Theo (2018-02)
    Early-Age Mechanical Behaviour of 3D Printed Concrete:
    Numerical Modelling and Experimental Testing
  10. Wolfs Robert, Bos Freek, Salet Theo (2019-03)
    Hardened Properties of 3D Printed Concrete:
    The Influence of Process Parameters on Inter-Layer Adhesion
  11. Wolfs Robert, Suiker Akke (2019-06)
    Structural Failure During Extrusion-Based 3D Printing Processes

39 Citations

  1. Rizzieri Giacomo, Ferrara Liberato, Cremonesi Massimiliano (2026-04)
    High-Fidelity Finite Element Modelling of Multi-Layer 3D Printing with Complex Toolpaths
  2. Zhang Wenchang, Liu Chuanqi, Weng Yiwei, Xue Tianju et al. (2026-02)
    A Differentiable Material Point Method Solver for the Modeling, Simulation and Analysis of Extrusion-Flow Process for 3D Concrete Printing
  3. Rizzieri Giacomo, Lanteri Federico, Ferrara Liberato, Cremonesi Massimiliano (2026-02)
    ShapeGen3DCP:
    A Deep Learning Framework for Layer Shape Prediction in 3D Concrete Printing
  4. Mollah Md., Šeta Berin, Spangenberg Jon (2026-02)
    A Virtual 3D Printing Framework for Off-Earth Construction
  5. Telichko Victor, Slavcheva Galina, Levchenko Artem (2025-12)
    Experimentally Verified FE Model of Bending Reinforced 3D-Printed Concrete Elements
  6. Yamakawa Soji, Vazquez-Santiago Kyshalee, Xia Yixuan, Ogura Hiroki et al. (2025-09)
    Concrete Spray 3D Printing Simulator for Nozzle Trajectory Planning
  7. Murtaza Ghulam, Baldinelli Giorgio (2025-08)
    Revolutionizing Architecture:
    3D Printing in Large Construction Industry and Strategic Innovations for Enhanced Performance
  8. Wagner Gabriel, Silva João, Ribeiro João, Figueiredo Bruno et al. (2025-08)
    A Novel and Flexible Approach to Modeling the Additive Manufacturing Extrusion of Cementitious Materials
  9. Kachalov A., Sánchez P., Mollah Md., Ezquerro J. et al. (2025-07)
    Numerical Analysis of Coaxially 3D Printed Lunar Habitats:
    Integrating Regolith and PCM for Passive Temperature Control
  10. Chen Qinbin, Barbat Gabriel, Cervera Miguel (2025-06)
    Finite Element Buildability Analysis of 3D Printed Concrete Including Failure by Elastic Buckling and Plastic Flow
  11. An Dong, Rahman Mahfuzur, Zhang Y., Yang Chunhui (2025-05)
    Effects of Key 3D Concrete Printing Process Parameters on Layer Shape:
    Experimental Study and Smooth Particle Hydrodynamics Modelling
  12. Jiang Yu, Zhang Qingxin, Tabbaa Abir, Daly Ronan (2025-03)
    The Critical Role of Time-Dependent Rheology for Improved Quality Control of 3D Printed Cementitious Structures
  13. Do Duc, Diab Zeinab, Rémond Sébastien, Hoxha Dashnor (2025-01)
    Numerical Simulation-Tools for 3D Printing
  14. Lim Sean, Tan Ming (2024-10)
    A Rheological Model for Concrete Additive Manufacturing
  15. Sahai Rajan, Bisht Ravindra, Kumar Shivam, Singh Siddharth et al. (2024-10)
    Modeling and Simulation of 3D Printed Concrete Layers and Validation Using Gantry Robotic Printer
  16. Jacquet Yohan, Spangenberg Jon, Perrot Arnaud (2024-09)
    Exploring Viscosity and Friction Through Temperature:
    Understanding Self-Heating Dynamics of Non-Newtonian 3D Printable Construction Materials via CFD Modeling
  17. Cui Weijiu, Sun Haijun, Zhou Jiangang, Wang Sheng et al. (2024-07)
    Geometric Quality Evaluation of Three-Dimensional Printable Concrete Using Computational Fluid Dynamics
  18. Duarte Gonçalo, Brown Nathan, Duarte José (2024-07)
    Workflow for Generating, Simulating, and Optimizing Form and Tool-Path in 3D Concrete Printing of Vaults
  19. Tao Yaxin, Zhou Jiangang, Cui Weijiu, Shi Xinyu et al. (2024-04)
    Numerical Assessment of Plastic Yielding in Extrusion-Based 3D Concrete Printing
  20. Abbaoui Khalid, Korachi Issam, Jai Mostapha, Šeta Berin et al. (2024-04)
    3D Concrete Printing Using Computational Fluid Dynamics:
    Modeling of Material-Extrusion with Slip-Boundaries
  21. Alhussain Ali, Duarte José, Brown Nathan (2024-02)
    Developing a Data-Driven Filament-Shape-Prediction-Model for 3D Concrete Printing
  22. Calderon-Cordova Carlos, Sarango Leonardo, Chamba Dennis, Sarango Roger et al. (2023-12)
    Performance-Analysis of Motion-Control-Algorithms of an Industrial-Robot-Arm Applied to 3D Concrete Printing Systems
  23. Reinold Janis, Daadouch Koussay, Meschke Günther (2023-11)
    Numerical Simulation of Three Dimensional Concrete Printing Based on a Unified Fluid and Solid Mechanics Formulation
  24. Pan Tinghong, Guo Rongxin, Fu Chaoshu, Ji Xuping et al. (2023-10)
    Extrusion-Based 3D Concrete Printing with Different Flow-Direction
  25. Mader Thomas, Schreter-Fleischhacker Magdalena, Shkundalova Olena, Neuner Matthias et al. (2023-09)
    Constitutive Modeling of Orthotropic Non-Linear Mechanical Behavior of Hardened 3D Printed Concrete
  26. Rizzieri Giacomo, Ferrara Liberato, Cremonesi Massimiliano (2023-07)
    Numerical Simulation of the Extrusion and Layer-Deposition-Processes in 3D Concrete Printing with the Particle-Finite-Element-Method
  27. Mollah Md., Comminal Raphaël, Silva Wilson, Šeta Berin et al. (2023-07)
    Computational Fluid Dynamics Modelling and Experimental Analysis of Reinforcement-Bar-Integration in 3D Concrete Printing
  28. Breseghello Luca, Hajikarimian Hamed, Jørgensen Henrik, Naboni Roberto (2023-07)
    3DLightBeam+:
    Design, Simulation, and Testing of Carbon-Efficient Reinforced 3D Concrete Printed Beams
  29. Abbaoui Khalid, Korachi Issam, Mollah Md., Spangenberg Jon (2023-06)
    Numerical Modelling of Planned Corner-Deposition in 3D Concrete Printing
  30. Mollah Md., Comminal Raphaël, Serdeczny Marcin, Šeta Berin et al. (2023-05)
    Computational Analysis of Yield-Stress-Buildup and Stability of Deposited Layers in Material-Extrusion Additive Manufacturing
  31. Salam Mohammad Abdul, Biernacki Joseph (2023-04)
    2D Stationary Computational Printing of Cement-Based Pastes with Time-Dependent Rheology
  32. Nguyen Vuong, Li Shuai, Liu Junli, Nguyen Kien et al. (2022-11)
    Modelling of 3D Concrete Printing Process:
    A Perspective on Material and Structural Simulations
  33. Abbaoui Khalid, Korachi Issam, Mollah Md., Spangenberg Jon (2022-11)
    CFD Modelling of Mortar-Extrusion and Path-Planning-Strategy at the Corner for 3D Concrete Printing
  34. Khan Shoukat, Koç Muammer (2022-10)
    Numerical Modelling and Simulation for Extrusion-Based 3D Concrete Printing:
    The Underlying Physics, Potential, and Challenges
  35. Krenzer Knut, Palzer Ulrich, Müller Steffen, Mechtcherine Viktor (2022-06)
    Simulation of 3D Concrete Printing Using Discrete Element Method
  36. Spangenberg Jon, Silva Wilson, Mollah Md., Comminal Raphaël et al. (2022-06)
    Integrating Reinforcement with 3D Concrete Printing:
    Experiments and Numerical Modelling
  37. Mohammad Abdul, Biernacki Joseph (2022-06)
    2D Stationary Computational Printing of Cement-Based Pastes
  38. Reinold Janis, Nerella Venkatesh, Mechtcherine Viktor, Meschke Günther (2022-02)
    Extrusion-Process-Simulation and Layer-Shape-Prediction During 3D Concrete Printing Using the Particle-Finite-Element-Method
  39. Mollah Md., Comminal Raphaël, Serdeczny Marcin, Pedersen David et al. (2022-01)
    Numerical Predictions of Bottom-Layer-Stability in Material-Extrusion Additive Manufacturing

BibTeX
@article{span_silv_comm_moll.2021.NSoML3CP,
  author            = "Jon Spangenberg and Wilson Ricardo Leal da Silva and Raphaël Comminal and Md. Tusher Mollah and Thomas Juul Andersen and Henrik Stang",
  title             = "Numerical Simulation of Multi-Layer 3D Concrete Printing",
  doi               = "10.21809/rilemtechlett.2021.142",
  year              = "2021",
  journal           = "RILEM Technical Letters",
  volume            = "6",
  pages             = "119--123",
}
Formatted Citation

J. Spangenberg, W. R. L. da Silva, R. Comminal, M. T. Mollah, T. J. Andersen and H. Stang, “Numerical Simulation of Multi-Layer 3D Concrete Printing”, RILEM Technical Letters, vol. 6, pp. 119–123, 2021, doi: 10.21809/rilemtechlett.2021.142.

Spangenberg, Jon, Wilson Ricardo Leal da Silva, Raphaël Comminal, Md. Tusher Mollah, Thomas Juul Andersen, and Henrik Stang. “Numerical Simulation of Multi-Layer 3D Concrete Printing”. RILEM Technical Letters 6 (2021): 119–23. https://doi.org/10.21809/rilemtechlett.2021.142.