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2024 | OriginalPaper | Chapter

The Effect of Layer Cross-Section on Plastic Shrinkage Cracking of 3D-Printed Concrete Elements

Authors : Slava Markin, Viktor Mechtcherine

Published in: Modern Building Materials, Structures and Techniques

Publisher: Springer Nature Switzerland

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Abstract

There is great potential for 3D concrete printing to revolutionize the construction industry in the near future. A major aspect of this technology transfer to the practical application will be the ability to control and mitigate the shrinkage of printed elements and shrinkage-related cracking. In the first hours after extrusion, 3D-printed concrete elements are subjected to the accelerated evaporation of the water. This leads to the development of high negative capillary pressure in the system. Before solidification, primary negative capillary pressure is responsible for the volumetric contractions of the 3D-printed concrete elements and subsequently cracking. Over time, printed structures with cracks degrade their durability, functionality, and aesthetics. Mitigating plastic shrinkage and shrinkage cracking is essential for 3D-printing sustainable and durable structures. The article analyses the cracking of the 3D-printed elements having different cross-sections of the layers. It was found that concrete elements printed with thin filaments are more susceptible to plastic shrinkage cracking than those printed with thicker filaments.

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Literature
5.
go back to reference Markin, S., Mechtcherine, V.: Measuring plastic shrinkage and related cracking of 3d printed concretes. In: Buswell, R., Blanco, A., Cavalaro, S., et al.: Third RILEM International Conference on Concrete and Digital Fabrication. Digital Concrete 2022, 1st ed. 2022, vol 37. Springer International Publishing; Imprint Springer, Cham, pp. 446–452 (2022) Markin, S., Mechtcherine, V.: Measuring plastic shrinkage and related cracking of 3d printed concretes. In: Buswell, R., Blanco, A., Cavalaro, S., et al.: Third RILEM International Conference on Concrete and Digital Fabrication. Digital Concrete 2022, 1st ed. 2022, vol 37. Springer International Publishing; Imprint Springer, Cham, pp. 446–452 (2022)
9.
go back to reference Moelich, G.M.: Plastic shrinkage cracking and other evaporation-related impairments in 3D printed and cast concrete. Dissertation, Stellenbosch University (2021) Moelich, G.M.: Plastic shrinkage cracking and other evaporation-related impairments in 3D printed and cast concrete. Dissertation, Stellenbosch University (2021)
10.
go back to reference Rooij, M.: Self-Healing Phenomena in Cement-Based Materials. State-of-the-Art Report of RILEM Technical Committee 221-SHC: Self-Healing Phenomena in Cement-Based Materials, 1st ed. RILEM State-Of-the-Art Reports, vol 11. Springer Netherlands, Dordrecht (2013) Rooij, M.: Self-Healing Phenomena in Cement-Based Materials. State-of-the-Art Report of RILEM Technical Committee 221-SHC: Self-Healing Phenomena in Cement-Based Materials, 1st ed. RILEM State-Of-the-Art Reports, vol 11. Springer Netherlands, Dordrecht (2013)
12.
go back to reference Wittmann, F.H.: Heresies on creep and shrinkage mechanisms. In: Creep, Shrinkage and Durability Mechanics of Concrete and Concrete Structures, Two Volume Set: Proceedings of the CONCREEP 8 Conference held in Ise-Shima, Japan, 1, pp. 3–9 (2008) Wittmann, F.H.: Heresies on creep and shrinkage mechanisms. In: Creep, Shrinkage and Durability Mechanics of Concrete and Concrete Structures, Two Volume Set: Proceedings of the CONCREEP 8 Conference held in Ise-Shima, Japan, 1, pp. 3–9 (2008)
Metadata
Title
The Effect of Layer Cross-Section on Plastic Shrinkage Cracking of 3D-Printed Concrete Elements
Authors
Slava Markin
Viktor Mechtcherine
Copyright Year
2024
DOI
https://doi.org/10.1007/978-3-031-44603-0_30