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压应力作用下碳化混凝土透气系数及孔隙结构研究

Investigation on the Air Permeability and Pore Structure of Concrete Subjected to Carbonation under Compressive Stress.

作者信息

Zhang Cheng, Shi Xinyu, Wang Ling, Yao Yan

机构信息

State Key Laboratory of Green Building Materials, China Building Materials Academy, Beijing 100024, China.

出版信息

Materials (Basel). 2022 Jul 7;15(14):4775. doi: 10.3390/ma15144775.

Abstract

Concrete structures have to withstand the combined effects of external load and environmental factors. Therefore, it is meaningful to study the durability of concrete under compression and carbonation. The air permeability coefficient () and pore structure of concrete under uniaxial compression and carbonation were measured by the Autoclam method and mercury intrusion porosimetry (MIP). The Autoclam test results showed that the concrete changed in a concave parabolic manner with the compressive stress level, and the inflection point of the stress level was 45%. The MIP results showed that the characteristic pore structural parameters (porosity, average pore diameter, median pore diameter by area, and median pore diameter by volume) first decreased and then increased with the stress level change. The change in concrete microstructure was a result of the combined effect of pore filling, decalcification, and densification, as well as the split effect. The key pore structural parameters affecting were confirmed using gray relational analysis (GRA). The top three parameters with the highest correlation with the carbonated concrete were porosity (gray relational grade = 0.789), median pore diameter by volume ( = 0.763), and proportion of transition pore volume ( = 0.827). Furthermore, the regression analysis showed a good linear relation between and the important pore structural parameters.

摘要

混凝土结构必须承受外部荷载和环境因素的综合作用。因此,研究混凝土在受压和碳化作用下的耐久性具有重要意义。采用自动测压法和压汞法(MIP)测定了单轴受压和碳化作用下混凝土的透气系数()和孔隙结构。自动测压试验结果表明,混凝土随压应力水平呈凹抛物线变化,应力水平的拐点为45%。MIP结果表明,特征孔隙结构参数(孔隙率、平均孔径、面积中值孔径和体积中值孔径)随应力水平变化先减小后增大。混凝土微观结构的变化是孔隙填充、脱钙、致密化以及劈裂效应共同作用的结果。采用灰色关联分析(GRA)确定了影响的关键孔隙结构参数。与碳化混凝土相关性最高的前三个参数是孔隙率(灰色关联度=0.789)、体积中值孔径(=0.763)和过渡孔隙体积比例(=0.827)。此外,回归分析表明与重要孔隙结构参数之间存在良好的线性关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d57c/9321981/4e9b2db51e6d/materials-15-04775-g001.jpg

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