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LDHs-NO2对水泥砂浆性能及钢筋锈蚀的影响

张轶 张彪 邓翔文 何宏杰

硅酸盐通报2025,Vol.44Issue(1):1-10,10.
硅酸盐通报2025,Vol.44Issue(1):1-10,10.DOI:10.16552/j.cnki.issn1001-1625.2024.1003

LDHs-NO2对水泥砂浆性能及钢筋锈蚀的影响

Effect of LDHs-NO2 on Properties of Cement Mortar and Corrosion of Steel Bar

张轶 1张彪 1邓翔文 2何宏杰3

作者信息

  • 1. 枣庄学院城市与建筑工程学院,枣庄 277100
  • 2. 枣庄学院美术与艺术设计学院,枣庄 277100
  • 3. 同济大学土木工程学院,上海 200092
  • 折叠

摘要

Abstract

In this paper,NO2 was intercalated into the interlayer of Zn-Al-LDHs(layered double hydroxides,LDHs)by hydrothermal method to prepare modified hydrotalcite(LDHs-NO2),and LDHs-NO2 was characterized.The effect of different LDHs-NO2 content on the fluidity,mechanical properties,chloride ion diffusion coefficient,pore structure,chloride ion adsorption of cement mortar and corrosion resistance of steel bar was investigated.The test results show that the compressive strength and flexural strength of cement mortar are improved,and the chloride ion diffusion coefficient and porosity are decreased by adding different content of LDHs-NO2 into cement mortar.Compared with the reference group,the performance of cement mortar with 2%(mass fraction)LDHs-NO2 is the most significant.Then,with the continuous increase of LDHs-NO2 content(4%,6%),the fluidity and mechanical properties of mortar decrease,but still higher than the reference group.The porosity of cement mortar has increased,but it is still lower than the reference group.LDHs-NO2 achieves the adsorption of Cl-through interlayer ion exchange,which is accompanied by the release of interlayer NO2 during the adsorption of Cl-.LDHs-NO2 can effectively delay the corrosion of steel bars in cement mortar,and the more LDHs-NO2 content in a certain range,the better the corrosion resistance of steel bars.

关键词

水泥砂浆/改性水滑石/氯离子吸附/钢筋锈蚀/阻锈机理

Key words

cement mortar/modified hydrotalcite/chloride ion adsorption/corrosion of steel bar/rust inhibition mechanism

分类

建筑与水利

引用本文复制引用

张轶,张彪,邓翔文,何宏杰..LDHs-NO2对水泥砂浆性能及钢筋锈蚀的影响[J].硅酸盐通报,2025,44(1):1-10,10.

基金项目

国家自然科学基金(52008234) (52008234)

硅酸盐通报

OA北大核心

1001-1625

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