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Additive Manufacturing of Cementitious Materials by Selective Paste-Intrusion (2020-11)

Numerical Modeling of the Flow Using a 2D-Axisymmetric Phase-Field-Method

10.3390/ma13215024

 Pierre Alexandre,  Weger Daniel,  Perrot Arnaud,  Lowke Dirk
Journal Article - Materials, Vol. 13, Iss. 21

Abstract

The 3D printing of concrete has now entered a new era and a transformation of the construction sector is expected to reshape fabrication with concrete. This work focuses on the selective paste intrusion method, which consists of bonding dry particles of aggregate with a cement paste. This innovative technique could lead to the production of very precise component for specific applications. The main obstacle to tackle in order to reach a high shape accuracy of high mechanical performances of 3D printing elements by selectively activating the material is the control of the distribution of the cement paste through the particle bed. With the aim to better understand the path followed by the solution as it penetrates a cut-section of the granular packing, two-dimensional numerical modeling is carried out using Comsol software. A phase-field method combined with a continuous visco-plastic model has been used to study the influence of the average grain diameter, the contact angle, and the rheological properties of cement pastes on the penetration depth. We compare the numerical modeling results to existing experimental results from 3D experiments and a one-dimensional analytical model. We then highlight that the proposed numerical approach is reliable to predict the final penetration of the cement pastes.

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10 Citations

  1. Straßer Alexander, Riegger Felix, Hamilton Leigh, Kränkel Thomas et al. (2023-09)
    Selective Paste-Intrusion:
    Integration of Reinforcement by WAAM
  2. Asensio Javier, Josa Irene, Monserrat Andrea, Fuente Albert (2023-09)
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  5. Mai (née Dressler) Inka, Lowke Dirk, Perrot Arnaud (2022-03)
    Fluid-Intrusion in Powder-Beds for Selective Cement-Activation:
    An Experimental and Analytical Study
  6. Lowke Dirk, Mai (née Dressler) Inka, Keita Emmanuel, Perrot Arnaud et al. (2022-02)
    Material-Process Interactions in Particle-Bed 3D Printing and the Underlying Physics
  7. Weger Daniel, Stengel Thorsten, Gehlen Christoph, Maciejewski Yannick et al. (2021-12)
    Approval for the Construction of the First 3D Printed Detached House in Germany:
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  8. Straßer Alexander, Weger Daniel, Matthäus Carla, Kränkel Thomas et al. (2021-11)
    Combining Wire and Arc Additive Manufacturing and Selective Paste-Intrusion for Additively Manufactured Structural Concrete
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    Particle-Bed Binding by Selective Paste-Intrusion:
    Strength and Durability of Printed Fine-Grain Concrete Members
  10. Weger Daniel, Pierre Alexandre, Perrot Arnaud, Kränkel Thomas et al. (2021-01)
    Penetration of Cement-Pastes into Particle-Beds:
    A Comparison of Penetration Models

BibTeX
@article{pier_wege_perr_lowk.2020.AMoCMbSPI,
  author            = "Alexandre Pierre and Daniel Weger and Arnaud Perrot and Dirk Lowke",
  title             = "Additive Manufacturing of Cementitious Materials by Selective Paste-Intrusion: Numerical Modeling of the Flow Using a 2D-Axisymmetric Phase-Field-Method",
  doi               = "10.3390/ma13215024",
  year              = "2020",
  journal           = "Materials",
  volume            = "13",
  number            = "21",
}
Formatted Citation

A. Pierre, D. Weger, A. Perrot and D. Lowke, “Additive Manufacturing of Cementitious Materials by Selective Paste-Intrusion: Numerical Modeling of the Flow Using a 2D-Axisymmetric Phase-Field-Method”, Materials, vol. 13, no. 21, 2020, doi: 10.3390/ma13215024.

Pierre, Alexandre, Daniel Weger, Arnaud Perrot, and Dirk Lowke. “Additive Manufacturing of Cementitious Materials by Selective Paste-Intrusion: Numerical Modeling of the Flow Using a 2D-Axisymmetric Phase-Field-Method”. Materials 13, no. 21 (2020). https://doi.org/10.3390/ma13215024.