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杂散电流对水泥基材料中钙浸出的影响。

The Effect of Stray Current on Calcium Leaching of Cement-Based Materials.

作者信息

Liu Fang, Zou Yuanrui, Wang Baomin, Yuan Xiaosa

机构信息

Shaanxi Key Laboratory of Safety and Durability of Concrete Structures, Xijing University, Xi'an 710123, China.

School of Civil Engineering, Dalian University of Technology, Dalian 116023, China.

出版信息

Materials (Basel). 2022 Mar 19;15(6):2279. doi: 10.3390/ma15062279.

Abstract

The metro engineering is in an environment rich in stray current and groundwater, which will accelerate concrete corrosion. In this study, the corrosion of cement-based materials, under stray current, consisting of direct current, was investigated, and the effects of stray current magnitude, water-binder ratio, fly ash, and silica fume on its corrosion were analyzed. The results show that, as the energisation duration of the stray current increases, the mass of the cathode side leachables increases, and the compressive strength of the cement-based materials decreases overall; at 120 d of stray current, the water-binder ratio of 0.50 shows the least reduction in strength, compared to the others; the mass of cathode side leachables decrease significantly with the increase in fly ash content; when fly ash content is 15%, the mass of cathode side leachables is the least, and the decrease in the compressive strength at 120 d of stray current is the smallest. At 10% silica fume content, the mass of the cathode side leachables is the least, and the decrease in the compressive strength of the cement-based materials at 120 d of stray current is the smallest. In general, the corrosion resistance is relatively good at 15% fly ash content and 10% silica fume content under stray current.

摘要

地铁工程处于富含杂散电流和地下水的环境中,这会加速混凝土腐蚀。本研究对由直流电组成的杂散电流作用下水泥基材料的腐蚀进行了研究,并分析了杂散电流大小、水胶比、粉煤灰和硅灰对其腐蚀的影响。结果表明,随着杂散电流通电时间的增加,阴极侧可溶物质量增加,水泥基材料的抗压强度总体下降;在杂散电流作用120 d时,水胶比为0.50的强度降低幅度最小,与其他相比;阴极侧可溶物质量随粉煤灰含量增加而显著降低;当粉煤灰含量为15%时,阴极侧可溶物质量最少,在杂散电流作用120 d时抗压强度降低最小。硅灰含量为10%时,阴极侧可溶物质量最少,在杂散电流作用120 d时水泥基材料抗压强度降低最小。总体而言,在杂散电流作用下,粉煤灰含量为15%和硅灰含量为10%时耐腐蚀性能相对较好。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc0d/8951181/1522f54ac426/materials-15-02279-g001.jpg

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