Fresh and Hardened Properties of Extrusion-Based 3D Printed Cementitious Materials (2020-07)¶
, , , Piasente Jonathon, Ashrafi Negar, , , , , Radlińska Aleksandra
Journal Article - Sustainability, Vol. 12, Iss. 14
Abstract
3D-printing of cementitious materials is an innovative construction approach with which building elements can be constructed without the use of formwork. Despite potential benefits in the construction industry, it introduces various engineering challenges from the material point of view. This paper reviews the properties of extrusion-based 3D-printed cementitious materials in both fresh and hardened states. Four main properties of fresh-state printing materials are addressed: flowability, extrudability, buildability, and open time, along with hardened properties, including density, compressive strength, flexural strength, tensile bond strength, shrinkage, and cracking. Experimental testing and effective factors of each property are covered, and a mix design procedure is proposed. The main objective of this paper is to provide an overview of the recent development in 3D-printing of cementitious materials and to identify the research gaps that need further investigation.
¶
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The Potential of 3D Printing in Building Pathology:
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A Review of Concrete 3D Printed Structural Members - Jesus Manuel, Costa Joana, Teixeira João, Pessoa Ana Sofia et al. (2023-01)
Use of Waste Materials to Reduce Cement and Natural Aggregates in 3D Printing Mortars - Yang Liming, Sepasgozar Samad, Shirowzhan Sara, Kashani Alireza et al. (2022-12)
Nozzle Criteria for Enhancing Extrudability, Buildability and Inter-Layer Bonding in 3D Printing Concrete - Nguyen Vuong, Li Shuai, Liu Junli, Nguyen Kien et al. (2022-11)
Modelling of 3D Concrete Printing Process:
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Prospect and Barrier of 3D Concrete:
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3D Printable Materials Made with Industrial Byproducts:
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Toward 3D Printable Engineered Cementitious Composites:
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Test-Methods for 3D Printable Concrete - 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 - Ekanayaka Virama, Lachmayer Lukas, Raatz Annika, Hürkamp André (2022-06)
Approach to Optimize the Inter-Layer Waiting Time in Additive Manufacturing with Concrete Utilizing FEM Modeling - Hojati Maryam, Memari Ali, Zahabi Mehrzad, Wu Zhengyu et al. (2022-06)
Barbed-Wire Reinforcement for 3D Concrete Printing - Skibicki Szymon, Pułtorak Monika, Kaszyńska Maria, Hoffmann Marcin et al. (2022-04)
The Effect of Using Recycled PET-Aggregates on Mechanical and Durability Properties of 3D Printed Mortar - Ivanova Irina, Ivaniuk Egor, Bisetti Sameercharan, Nerella Venkatesh et al. (2022-03)
Comparison Between Methods for Indirect Assessment of Buildability in Fresh 3D Printed Mortar and Concrete - 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 - Ismail Nur, Ibrahim Mustaffa, Abdullah Siti (2022-01)
Compressive Strength of 3D Printing Bio-Composites Mortar - Hojati Maryam, Li Zhanzhao, Memari Ali, Park Keunhyoung et al. (2022-01)
3D Printable Quaternary-Cementitious-Materials Towards Sustainable Development:
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Effect of Synthetic Micro-Fiber and Viscosity-Modifying-Agent on Layer Deformation, Viscosity, and Open-Time of Cement Mortar for 3D Printing Application - Skibicki Szymon, Techman Mateusz, Federowicz Karol, Olczyk Norbert et al. (2021-12)
Experimental Study of Hardened Young's Modulus for 3D Printed Mortar - Stidwell Samuel, Kreiger Eric (2021-12)
Determination of Mechanical Properties of Additively Constructed Concrete Based on Specimen-Orientation - He Lewei, Tan Jolyn, Chow Wai, Li Hua et al. (2021-11)
Design of Novel Nozzles for Higher Inter-Layer Strength of 3D Printed Cement-Paste - Ashrafi Negar, Nazarian Shadi, Meisel Nicholas, Duarte José (2021-08)
Experimental Calibration and Compensation for the Continuous Effect of Time, Number of Layers and Volume of Material on Shape Deformation in Small-Scale Additive Manufacturing of Concrete - Guimarães Ana, Delgado João, Lucas Sandra (2021-07)
Advanced Manufacturing in Civil Engineering - Zhang Chao, Nerella Venkatesh, Krishna Anurag, Wang Shen et al. (2021-06)
Mix-Design Concepts for 3D Printable Concrete:
A Review - Bakhshi Amir, Sedghi Reza, Hojati Maryam (2021-06)
A Preliminary Study on the Mix-Design of 3D Printable Engineered Cementitious Composite - Dubov Alexey, Ruben Sam, Korshikov Vasily, Ivanova Anna et al. (2020-11)
3D Printing of Polymers with Continuous Fibers to Replace Steel-Reinforcement and Structural Steel in Construction - Ashrafi Negar, Nazarian Shadi, Meisel Nicholas, Duarte José (2020-10)
Experimental Prediction of Material-Deformation in Large-Scale Additive Manufacturing of Concrete
BibTeX
@article{li_hoja_wu_pias.2020.FaHPoEB3PCM,
author = "Zhanzhao Li and Maryam Hojati and Zhengyu Wu and Jonathon Piasente and Negar Ashrafi and José Pinto Duarte and Shadi Nazarian and Sven G. Bilén and Ali M. Memari and Aleksandra Radlińska",
title = "Fresh and Hardened Properties of Extrusion-Based 3D Printed Cementitious Materials: A Review",
doi = "10.3390/su12145628",
year = "2020",
journal = "Sustainability",
volume = "12",
number = "14",
}
Formatted Citation
Z. Li, “Fresh and Hardened Properties of Extrusion-Based 3D Printed Cementitious Materials: A Review”, Sustainability, vol. 12, no. 14, 2020, doi: 10.3390/su12145628.
Li, Zhanzhao, Maryam Hojati, Zhengyu Wu, Jonathon Piasente, Negar Ashrafi, José Pinto Duarte, Shadi Nazarian, Sven G. Bilén, Ali M. Memari, and Aleksandra Radlińska. “Fresh and Hardened Properties of Extrusion-Based 3D Printed Cementitious Materials: A Review”. Sustainability 12, no. 14 (2020). https://doi.org/10.3390/su12145628.