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纳米二氧化硅和氧化镁对水下不分散混凝土水化特性及抗冲刷性的影响评估

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

作者信息

Jeon In Kyu, Woo Byeong Hun, Yoo Dong Ho, Ryou Jae Suk, Kim Hong Gi

机构信息

Civil and Environmental Engineering Department, Hanyang University, Jaesung Civil Engineering Building, 222 Wangsimni-ro, Seongdong Gu, Seoul 04763, Korea.

出版信息

Materials (Basel). 2021 Mar 10;14(6):1328. doi: 10.3390/ma14061328.

Abstract

In this paper, the effect of nano-SiO (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.

摘要

本文评估了纳米二氧化硅(NS)和氧化镁对水下不分散混凝土(UWC)水化特性和抗冲刷性的影响。进行了坍落度流动试验、粘度试验和凝结时间测量,以确定NS和氧化镁对UWC流变性能的影响。测量了pH值和浊度,以研究UWC混合料的抗冲刷性能。为了分析水化特性和力学性能,进行了水化热分析、抗压强度试验和热重分析。实验结果表明,NS和氧化镁的细颗粒降低了坍落度流动,增加了粘度,并增强了UWC的抗冲刷性。此外,NS和氧化镁均缩短了初凝和终凝时间,而氧化镁试件的替代物略微延长了凝结时间。NS加速了峰值时间并提高了峰值温度,而氧化镁由于水镁石的形成延迟了水化过程并降低了温度。抗压结果表明,NS提高了UWC的抗压强度,而氧化镁略微降低了强度。NS的添加还导致形成额外的C-S-H,而氧化镁的替代物导致生成水滑石相。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fdf0/7999238/32090ec38136/materials-14-01328-g001.jpg

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