华南理工大学学报(自然科学版) ›› 2018, Vol. 46 ›› Issue (11): 53-60.doi: 10.3969/j.issn.1000-565X.2018.11.008

• 材料科学与技术 • 上一篇    下一篇

基于海洋环境浪溅区长期暴露试验的偏高岭土混凝土耐久性研究

曾俊杰 范志宏 熊建波 王胜年   

  1. 水工构造物耐久性技术交通运输部重点实验室
  • 收稿日期:2018-06-04 修回日期:2018-06-20 出版日期:2018-11-25 发布日期:2018-10-02
  • 通信作者: 曾俊杰( 1983) ,男,博士,高级工程师,主要从事先进水泥基材料研究. E-mail:zjunjie1@cccc4.com
  • 作者简介:曾俊杰( 1983) ,男,博士,高级工程师,主要从事先进水泥基材料研究.
  • 基金资助:
    国家重点研发计划项目( 2016YFB0303502) 

Research on durability of metakaolin concrete based on long-term exposure experiment at in-situ marine splash zone

ZENG Junjie FAN Zhihong XIONG Jianbo WANG Shengnian    

  1.   Key Laboratory of Harbor and Marine Structure Durability Technology,the Ministry of Communications,Guangzhou 510230, Guangdong,China
  • Received:2018-06-04 Revised:2018-06-20 Online:2018-11-25 Published:2018-10-02
  • Contact: Jun-jie ZENG,曾俊杰( 1983) ,男,博士,高级工程师,主要从事先进水泥基材料研究. E-mail:zjunjie1@cccc4.com
  • About author:曾俊杰( 1983) ,男,博士,高级工程师,主要从事先进水泥基材料研究.
  • Supported by:
    The National Key R&D Program of China( 2016YFB0303502) 

摘要: 采用偏高岭土单掺以及与粉煤灰复掺取代水泥配制混凝土,在实际海洋环境浪溅区开展长期暴露试验,测试了暴露混凝土中总氯离子含量和自由氯离子含量,采用SEM-EDS测试了混凝土的水化产物形貌与元素分布,并采用XRD分析了暴露混凝土的物相组成。结果表明:偏高岭土可降低实际海洋环境下混凝土中氯离子浓度和氯离子扩散系数,提升混凝土氯离子固化能力,当与粉煤灰复掺时效果更佳。偏高岭土改善混凝土抗氯离子渗透性的机理在于,改善了混凝土结构密实性,提高了水化凝胶的A/S,降低混凝土碱性,促进了暴露混凝土中F盐的生成。此外,偏高岭土对于实际海洋环境下混凝土的长期抗硫酸盐侵蚀性没有不良影响。

关键词: 混凝土, 偏高岭土, 长期暴露试验, 耐久性, 氯离子渗透, 海洋环境

Abstract: Concrete containing metakaolin (MK) and ternary blends of MK and fly ash (FA) were prepared. A long-term exposure experiment at in-situ marine splash zone for the prepared concretes were carried out. Total and free chloride content of the exposed concretes were tested. SEM-EDS was used to analyze the morphology and element composition of the hydrates, while XRD was used to determine the phase component of the exposed concretes. The results show that the chloride content and chloride diffusion coefficient of concrete under actual marine environment are decreased with the application of MK, while the chloride binding capacity is enhanced. The improvement effect becomes more significant when FA is applied in the MK concrete. A denser structure of concrete can be obtained by the use of MK. Higher A/S and lower alkalinity of the hydrates of MK concretes promote the formation of Friedel’s salt. In addition, the application of MK did not have detrimental effect on sulfate resistance of the long-term exposed concretes.

Key words: concrete, metakaolin, long-term exposure experiment, durability, chloride penetration, marine environment

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