Nano-Technology for Improved Three-Dimensional Concrete Printing Constructability (2021-11)¶
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Journal Article - ACI Materials Journal, Vol. 118, Iss. 6, pp. 19-28
Abstract
This paper investigates the application of nanotechnology in three-dimensional (3D) concrete printing (3DCP), in particular for enhancing thixotropic material behavior, improving buildability or the vertical building rate, and the amelioration of typical 3DCP anisotropic mechanical properties. Two 3D-printable cementitious materials are investigated in this study: 1) high-performance concrete (HPC) with respective nano-silica (nS) and silicon carbide (SiC) nanoparticle additions; and 2) lightweight foamed concrete (LWFC) with nS addition. The results indicate a significant increase in thixotropic material behavior for the HPC at low nanoparticle dosages. The inclusion of SiC nanoparticles improved the HPC’s buildability performance by 45%. The incorporation of 3% nS to the LWFC increased the static yield shear stress by up to five times, which is validated by the improved buildability performance. Hardened state mechanical properties improved for both cementitious materials and nanoparticle additions. Especially noteworthy is nanoparticles’ favorable influence on the interlayer bond strength.
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10 References
- Bos Freek, Wolfs Robert, Ahmed Zeeshan, Salet Theo (2016-08)
Additive Manufacturing of Concrete in Construction:
Potentials and Challenges of 3D Concrete Printing - Cho Seung, Kruger Jacques, Rooyen Algurnon, Zijl Gideon (2021-03)
Rheology and Application of Buoyant Foam-Concrete for Digital Fabrication - Kruger Jacques, Cho Seung, Zeranka Stephan, Vintila Cristian et al. (2019-12)
3D Concrete Printer Parameter Optimization for High-Rate Digital Construction Avoiding Plastic Collapse - Kruger Jacques, Zeranka Stephan, Zijl Gideon (2019-07)
3D Concrete Printing:
A Lower-Bound Analytical Model for Buildability-Performance-Quantification - Kruger Jacques, Zeranka Stephan, Zijl Gideon (2019-07)
An Ab-Inito Approach for Thixotropy Characterisation of Nano-Particle-Infused 3D Printable Concrete - Kruger Jacques, Zijl Gideon (2020-10)
A Compendious Review on Lack-of-Fusion in Digital Concrete Fabrication - Le Thanh, Austin Simon, Lim Sungwoo, Buswell Richard et al. (2012-01)
Hardened Properties of High-Performance Printing Concrete - Mai (née Dressler) Inka, Freund Niklas, Lowke Dirk (2020-01)
The Effect of Accelerator Dosage on Fresh Concrete Properties and on Inter-Layer Strength in Shotcrete 3D Printing - Suiker Akke, Wolfs Robert, Lucas Sandra, Salet Theo (2020-06)
Elastic Buckling and Plastic Collapse During 3D Concrete Printing - Wolfs Robert, Suiker Akke (2019-06)
Structural Failure During Extrusion-Based 3D Printing Processes
6 Citations
- Jamjala Siva, Thulasirangan Lakshmidevi Manivannan, Reddy K., Kafle Bidur et al. (2025-10)
A Critical Review on Synergistic Integration of Nanomaterials in 3D-Printed Concrete:
Rheology to Microstructure and Eco-Functionality - Aydin Tolga, Sandalci Ilgin, Aydin Eylül, Kara Burhan et al. (2025-08)
Investigation of Bacterial Cells and Clays as Rheology Modifiers in 3D Concrete Printing - Salifu N., Bassuoni Mohamed, Guven Gursans (2025-05)
Performance Evaluation of Limestone-Blended Cement and Cellulose Nanomaterials in 3D Concrete Printing - Yassin Ahmed, Hafez Mohamed, Aboelhassan Mohamed (2025-04)
Experimental and Numerical Investigation on the Effect of Different Types of Synthetic Fibers on the Flexure Behavior and Mechanical Properties of 3D Cementitious Composite Printing Provided with Cement CEM II/A-P - Baytak Tugba, Gdeh Tawfeeq, Jiang Zhangfan, Arce Gabriel et al. (2024-09)
Rheological, Mechanical, and Environmental Performance of Printable Graphene-Enhanced Cementitious Composites with Limestone and Calcined Clay - Aydin Eylül, Kara Burhan, Bundur Zeynep, Özyurt Nilüfer et al. (2022-08)
A Comparative Evaluation of Sepiolite and Nano-Montmorillonite on the Rheology of Cementitious Materials for 3D Printing
BibTeX
@article{krug_cho_best_rooy.2021.NTfITDCPC,
author = "Jacques Pienaar Kruger and Seung Cho and Frederick A. Bester and Algurnon Steve van Rooyen and Gideon Pieter Adriaan Greeff van Zijl",
title = "Nano-Technology for Improved Three-Dimensional Concrete Printing Constructability",
doi = "10.14359/51733101",
year = "2021",
journal = "ACI Materials Journal",
volume = "118",
number = "6",
pages = "19--28",
}
Formatted Citation
J. P. Kruger, S. Cho, F. A. Bester, A. S. van Rooyen and G. P. A. G. van Zijl, “Nano-Technology for Improved Three-Dimensional Concrete Printing Constructability”, ACI Materials Journal, vol. 118, no. 6, pp. 19–28, 2021, doi: 10.14359/51733101.
Kruger, Jacques Pienaar, Seung Cho, Frederick A. Bester, Algurnon Steve van Rooyen, and Gideon Pieter Adriaan Greeff van Zijl. “Nano-Technology for Improved Three-Dimensional Concrete Printing Constructability”. ACI Materials Journal 118, no. 6 (2021): 19–28. https://doi.org/10.14359/51733101.