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Limitations of the use of concrete resistivity as an indicator for the rate of chloride-induced macro-cell corrosion

机译:使用混凝土电阻率作为氯引起的大电池腐蚀速率指标的局限性

摘要

An experimental setup was designed to study the impact of concrete resistivity on the rate of chloride-induced reinforcement corrosion. Small pieces of mild steel were used to simulate pits (anodes) that form when chlorides come into contact with the reinforcement. The galvanic current was measured between the simulated anodes and a cathode network. Comparisons were made between the galvanic current and the concrete bulk resistivity. The bulk resistivity was varied using two mortar mixes (made of plain Portland cement and a blended Fly ash cement) which were exposed in different temperature and moisture conditions. Despite a high scatter in the results, it was clear that the relationship between bulk resistivity and corrosion rate depended on the mortars tested. The findings presented in this paper and the accompanying work strongly indicate that concrete bulk resistivity alone does not provide sufficient information for assessment of the corrosion rate for chloride-induced macro-cell corrosion
机译:设计了一个实验装置来研究混凝土电阻率对氯化物诱导的钢筋腐蚀速率的影响。小块低碳钢被用来模拟当氯化物与钢筋接触时形成的凹坑(阳极)。在模拟的阳极和阴极网络之间测量电流。在电流和混凝土的体积电阻率之间进行了比较。使用两种砂浆混合物(由普通波特兰水泥和粉煤灰水泥制成)可改变体电阻率,将其暴露在不同的温度和湿度条件下。尽管结果分散性很高,但很明显,体电阻率与腐蚀速率之间的关系取决于所测试的砂浆。本文中提出的发现和相关工作强烈表明,仅混凝土的体电阻率无法提供足够的信息来评估氯化物诱导的大电池腐蚀的腐蚀速率

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