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The curing regime included water curing for 2 days, followed by air curing for 5 days, and finally water curing for the remainder of 28 days.
All specimens were under water curing condition.
The tests were carried out at the end of 28 day water curing.
Three different curing regimes were applied, namely, continuous normal water curing (NW), initial water curing for 28 days before exposure to an open air environment (OA), and initial water curing for 28 days before exposure to seawater (SW).
The impact of 2, 4, and 6 days of water curing on 28-day compressive strength was examined as well.
Mortars containing GGBFS in binder had higher enhancement on compressive strength under early hot water curing.
The bond strength rapidly increased until the 28 days water curing.
Accelerated carbonation tests were conducted on these "filler-typed" SCCs after 28 days water curing.
After 3 days of water curing the beams were tested again and loaded till the failure.
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"CO2-water" curing resulted in the best self-healing performance of all curing conditions, which was confirmed with results from different performance tests throughout the experimental study.
Subsequently, the absorption spectra of Ag NPs of different water-curing times were measured with an UV-Vis spectrophotometer.
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