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Durability properties of 3D printed concrete (3DPC)

期刊

AUTOMATION IN CONSTRUCTION
卷 142, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.autcon.2022.104479

关键词

3D printing of cementitious materials; 3D printed concrete (3DPC); Additive manufacturing of concrete; Extrusion-based 3D printing; Concrete durability

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This article provides a critical review of the durability properties of 3D printed concrete sections, discussing the impact of printing parameters, mixture proportions, and key materials on performance, and offering suggestions for improving durability.
3D printing of concrete is commonly viewed as a promising way to manufacture novel structural sections with numerous benefits. This process, however, relies upon a specific set of timely parameters that can have signif-icant impact on the long-term performance and durability of the printed sections, especially since they are potentially expected to be exposed to the outside environments. In that respect, this article provides a critical review of the durability properties of 3D printed concrete (3DPC) sections, including the effect of printing pa-rameters, mixture proportions, and key materials on shrinkage behavior, porosity and pore connectivity, freeze thawing, fire, chemical, and acid resistance. Based on this review, it is found that the thermo-durability prop-erties of 3D printed concrete sections are highly sensitive to the shrinkage potential and printing time interval, which can significantly alter the porosity and pore connectivity of the printed concrete, especially at interlayer bonding regions. Suggestions for improving the durability of 3D printed concrete sections exposed to the various environments are also provided in the final part of this review.

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