Evaluation of the Hydration Characteristics and Anti-Washout Resistance of Non-Dispersible Underwater Concrete with Nano-SiO2 and MgO

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초록

In this paper, the effect of nano-SiO2 (NS) and MgO on the hydration characteristics and anti-washout resistance of non-dispersible underwater concrete (UWC) was evaluated. A slump flow test, a viscosity test, and setting time measurement were conducted to identify the impacts of NS and MgO on the rheological properties of UWC. The pH and turbidity were measured to investigate the anti-washout performance of UWC mixes. To analyze the hydration characteristics and mechanical properties, hydration heat analysis, a compressive strength test, and thermogravimetric analyses were conducted. The experimental results showed that the fine particles of NS and MgO reduced slump flow, increased viscosity, and enhanced the anti-washout resistance of UWC. In addition, both NS and MgO shortened the initial and final setting times, and the replacement of MgO specimens slightly prolonged the setting time. NS accelerated the peak time and increased the peak temperature, and MgO delayed the hydration process and reduced the temperature due to the formation of brucite. The compressive results showed that NS improved the compressive strength of the UWC, and MgO slightly decreased the strength. The addition of NS also resulted in the formation of extra C-S-H, and the replacement of MgO caused the generation of a hydrotalcite phase.

키워드

underwater concreteanti-washouthydrationnano-SiO2MgOCompressive strengthConcretesHydrationOxide mineralsSilicaThermogravimetric analysisUnderwater constructionViscosityFine particlesHydration characteristicsHydration processNon-dispersible underwater concretePeak temperaturesRheological propertySlump flow testViscosity testsMagnesia
제목
Evaluation of the Hydration Characteristics and Anti-Washout Resistance of Non-Dispersible Underwater Concrete with Nano-SiO2 and MgO
저자
Jeon, In KyuWoo, Byeong HunYoo, Dong HoRyou, Jae SukKim, Hong Gi
DOI
10.3390/ma14061328
발행일
2021-03
유형
Article
저널명
Materials
14
6
페이지
1 ~ 14

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