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一种用硅烷偶联剂改性的水泥浆-尾密封剂界面,用于增强混凝土衬砌系统的防水性能。

A cement paste-tail sealant interface modified with a silane coupling agent for enhancing waterproofing performance in a concrete lining system.

作者信息

Li Fan, Yang Yuyou, Tao Mingjiang, Li Xiangqian

机构信息

School of Engineering and Technology, China University of Geosciences (Beijing) Beijing 100083 China

Department of Civil and Environmental Engineering, Worcester Polytechnic Institute Worcester MA 01609 USA

出版信息

RSC Adv. 2019 Mar 4;9(13):7165-7175. doi: 10.1039/c8ra10457c. eCollection 2019 Mar 1.

Abstract

Although hydrophobic surface coating of concrete is currently used to enhance waterproofing performance of underground structures, the chemical and mechanical incompatibility between an inorganic cement and organic coating makes it a challenge to ensure long-term waterproofing properties of underground facilities, especially for tunnel lining systems. This study explores the feasibility of using a silane coupling agent to improve compatibility between the cement and tail sealant interface, which aims to reduce the water leakage risk of lining systems. The enhanced waterproofing performance of the cement-tail sealant interface modified with the silane agent was confirmed by its hydrophobicity ( reduced wetting ability) and reduced permeability, which was evaluated by static water-contact angle and impermeability pressure measurements. The processes underlying the enhanced waterproofing performance of the cement-tail sealant interface were revealed by chemical bonding, microstructure and porosity characterization. Fourier transform infrared spectroscopy (FTIR) results of the cement-tail sealant interface confirm the reactions between the silane agent and cement hydration products, while both microstructure and porosity results reveal that the cement-tail sealant interface is denser and less porous, relative to the control cement grout.

摘要

尽管目前使用混凝土疏水表面涂层来提高地下结构的防水性能,但无机水泥与有机涂层之间的化学和机械不相容性使得确保地下设施的长期防水性能成为一项挑战,特别是对于隧道衬砌系统而言。本研究探讨了使用硅烷偶联剂改善水泥与尾密封剂界面相容性的可行性,旨在降低衬砌系统的漏水风险。通过硅烷试剂改性的水泥-尾密封剂界面增强的防水性能通过其疏水性(降低的润湿能力)和降低的渗透性得到证实,这通过静态水接触角和抗渗压力测量进行评估。通过化学键合、微观结构和孔隙率表征揭示了水泥-尾密封剂界面增强防水性能的潜在过程。水泥-尾密封剂界面的傅里叶变换红外光谱(FTIR)结果证实了硅烷试剂与水泥水化产物之间的反应,而微观结构和孔隙率结果均表明,相对于对照水泥浆,水泥-尾密封剂界面更致密且孔隙更少。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fcd0/9061093/4e5b56995c02/c8ra10457c-f1.jpg

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