From Analytical Methods to Numerical Simulations (2021-07)¶
10.1016/j.cemconcomp.2021.104164
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Journal Article - Cement and Concrete Composites, Vol. 122
Abstract
This paper compiles selected predictive analytical and numerical tools which can be used to model and understand the mechanisms of importance at different stages during and immediately after extrusion-based 3D printing of cementitious materials. The proposed toolbox covers different aspects of the process including mixing, material transportation, layer deposition, mechanical behavior of the fresh printed structure, and its early curing. Specifically, the paper provides basic analytical methods that should be helpful for an initial, first-order analysis of a given printing process. These methods deliver, in turn, a first estimation of some material requirements and process parameters. Limitations of these analytical methods are also discussed. Furthermore, the paper presents a review of advanced numerical tools that can be used to simulate the steps in the printing process accurately. It is shown that these tools can serve to describe complex behaviors, help in designing process parameters, or optimizing the rheological response, even though further developments are still needed to capture fully the attendant physical mechanisms.
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The Use of Rice Husk Particles to Adjust the Rheological Properties of 3D Printable Cementitious Composites Through Water Sorption - Bai Gang, Wang Li, Wang Fang, Ma Guowei (2022-12)
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Spray-Based 3D Concrete Printing with Calcium and Polymeric Additives:
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3D Concrete Printing:
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Numerical Simulation of Elastic Buckling in 3D Concrete Printing Using the Lattice-Model with Geometric Non-Linearity - Peralta Abadi Patricia, Smarsly Kay (2022-07)
Requirements-Analysis of Additive Manufacturing for Concrete Printing:
A Systematic Review - Pan Tinghong, Guo Rongxin, Jiang Yaqing, Ji Xuping (2022-07)
How Do the Contact Surface Forces Affect the Inter-Layer Bond Strength of 3D Printed Mortar? - Krenzer Knut, Palzer Ulrich, Müller Steffen, Mechtcherine Viktor (2022-06)
Simulation of 3D Concrete Printing Using Discrete Element Method - Chang Ze, Wan Zhi, Xu Yading, Schlangen Erik et al. (2022-06)
Convolutional Neural Network for Predicting Crack-Pattern and Stress-Crack-Width Curve of Air-Void Structure in 3D Printed Concrete - Mohammad Abdul, Biernacki Joseph (2022-06)
2D Stationary Computational Printing of Cement-Based Pastes - Zhang Hanghua, Xiao Jianzhuang, Duan Zhenhua, Zou Shuai et al. (2022-06)
Effects of Printing Paths and Recycled Fines on Drying Shrinkage of 3D Printed Mortar - Ramakrishnan Sayanthan, Kanagasuntharam Sasitharan, Sanjayan Jay (2022-05)
In-Line Activation of Cementitious Materials for 3D Concrete Printing - Chen Yu, Chang Ze, He Shan, Çopuroğlu Oğuzhan et al. (2022-04)
Effect of Curing Methods During a Long Time-Gap Between Two Printing Sessions on the Inter-Layer Bonding of 3D Printed Cementitious Materials - Ma Guowei, Buswell Richard, Silva Wilson, Wang Li et al. (2022-03)
Technology Readiness:
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A Chemical Process Engineering Look at Digital Concrete Processes:
Critical Step Design, In-Line Mixing, and Scale-Up - Nguyen Vuong, Nguyen-Xuan Hung, Panda Biranchi, Tran Jonathan (2022-03)
3D Concrete Printing Modelling of Thin-Walled Structures - 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 - Wang Li, Yang Yu, Yao Liang, Ma Guowei (2022-02)
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Digital Concrete Construction by Means of Additive Processes:
State of the Art and Research Needs
BibTeX
@article{perr_pier_nere_wolf.2021.FAMtNS,
author = "Arnaud Perrot and Alexandre Pierre and Venkatesh Naidu Nerella and Robert Johannes Maria Wolfs and Emmanuel Keita and Sooraj Kumar A. O. Nair and Narayanan Neithalath and Nicolas Roussel and Viktor Mechtcherine",
title = "From Analytical Methods to Numerical Simulations: A Process Engineering Toolbox for 3D Concrete Printing",
doi = "10.1016/j.cemconcomp.2021.104164",
year = "2021",
journal = "Cement and Concrete Composites",
volume = "122",
}
Formatted Citation
A. Perrot, “From Analytical Methods to Numerical Simulations: A Process Engineering Toolbox for 3D Concrete Printing”, Cement and Concrete Composites, vol. 122, 2021, doi: 10.1016/j.cemconcomp.2021.104164.
Perrot, Arnaud, Alexandre Pierre, Venkatesh Naidu Nerella, Robert Johannes Maria Wolfs, Emmanuel Keita, Sooraj Kumar A. O. Nair, Narayanan Neithalath, Nicolas Roussel, and Viktor Mechtcherine. “From Analytical Methods to Numerical Simulations: A Process Engineering Toolbox for 3D Concrete Printing”. Cement and Concrete Composites 122 (2021). https://doi.org/10.1016/j.cemconcomp.2021.104164.