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Development of a galvanic sensor system for detecting the corrosion damage of the steel embedded in concrete structures: Part 1. Laboratory tests to correlate galvanic current with actual damage

机译:用于检测嵌入混凝土结构中的钢的腐蚀损伤的电流传感器系统的开发:第1部分。将电流与实际损伤相关联的实验室测试

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摘要

The correlation between sensor output and corrosion rate of reinforcing steel was evaluated by laboratory electrochemical tests in saturated Ca(OH)_2 with 3.5 wt. percent NaCl. In this paper, two types of electrochemical probes were developed: galvanic cells containing of steel/copper and steel/stainless steel couples. The corrosion behavior in saturated Ca(OH)_2 solution with and without 3.5 wt. percent NaCl addition for the different electrodes was investigated by potentiodynamic test. Weight loss measurement and galvanic corrosion test were conducted to obtain the corrosion rate of reinforcing steel and the charge of sensor in saturated Ca(OH)_2 solution with 3.5 wt, percent NaCl addition, respectively. The results of the potentiodynamic test indicated the possibility of detecting an ingress point of chlorides by measuring the galvanic current. In galvanic corrosion tests, the galvanic current of steel/copper couple was higher than that of steel/stainless steel couple, i.e., the steel/copper sensor is more suitable for high resistance environment. The steel/stainless sensor showed a better linear correlation than the steel/copper sensor. Through the relationship between the sensor system output and the weight loss (mg/cm~2) of steel, real corrosion damage of the steel embedded in concrete can be detected.
机译:传感器输出和钢筋腐蚀速率之间的相关性通过实验室电化学测试在3.5 wt。%的饱和Ca(OH)_2中进行了评估。氯化钠百分比。在本文中,开发了两种类型的电化学探针:包含钢/铜和钢/不锈钢对的原电池。在有和没有3.5 wt。%的饱和Ca(OH)_2溶液中的腐蚀行为。通过电位动力学测试研究了不同电极上NaCl的添加百分比。进行失重测量和电腐蚀试验,分别获得添加3.5 wt%NaCl的饱和Ca(OH)_2溶液中钢筋的腐蚀速率和传感器的电荷。电位动力学测试的结果表明可以通过测量电流来检测氯化物的进入点。在电腐蚀试验中,钢/铜对的电流大于钢/不锈钢对的电流,即钢/铜传感器更适合于高电阻环境。钢/不锈钢传感器显示出比钢/铜传感器更好的线性相关性。通过传感器系统输出与钢的重量损失(mg / cm〜2)之间的关系,可以检测埋在混凝土中的钢的真实腐蚀损伤。

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