Influence of seawater and sea sand on the performance of Anti-washout underwater concrete: The overlooked significance of Mg2

•The effect of seawater and sea sand at different stages of preparation on the performance of AWC mortar was systematically studied.•The adverse effect of seawater on the properties of AWC mortar at the molding stage was found for the first time.•The mechanism of the influence of seawater on AWC pro...

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Veröffentlicht in:Construction & building materials 2023-04, Vol.374, p.130932, Article 130932
Hauptverfasser: Xiao, Shunmin, Zhang, Ming, Zou, Dujian, Liu, Tiejun, Zhou, Ao, Li, Ye
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Sprache:eng
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Zusammenfassung:•The effect of seawater and sea sand at different stages of preparation on the performance of AWC mortar was systematically studied.•The adverse effect of seawater on the properties of AWC mortar at the molding stage was found for the first time.•The mechanism of the influence of seawater on AWC properties at the molding stage was revealed. Seawater and sea sand are widely used in marine concrete to overcome the shortage of freshwater and river sand. However, the effect of the various salts in seawater and sea sand on the performance of anti-washout underwater concrete (AWC) is unclear. In this study, the influence of seawater and sea sand, as well as the aggressive ions in seawater, on the anti-washout ability, mechanical performance, and microscopic structure of AWC mortar are studied systematically. The AWC mortar molded in seawater has a lower compressive strength even though its indicators of anti-washout ability perform better than that in freshwater. This is because Mg2+ in seawater chemically binds with OH– in cement to form Mg(OH)2 film absorbed by anti-washout admixture(AWA), which inhibits the release of substances in AWC while also introducing more defects in AWC. This study lays the foundation for promoting the application of seawater and sea sand AWC in marine engineering.
ISSN:0950-0618
1879-0526
DOI:10.1016/j.conbuildmat.2023.130932