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Development of a galvanic sensor system for detecting the corrosion damage of the steel embedded in concrete structure: Part 2. Laboratory electrochemical testing of sensors in concrete

机译:用于检测嵌在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2部分。混凝土中传感器的实验室电化学测试

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摘要

The correlation between sensor output and the corrosion rate of steel bar was confirmed in concrete environment. Open-circuit potential, linear polarization resistance (LPR) measurement and electrochemical impedance spectroscopy (EIS) were used to evaluate the corrosion behavior of steel bar embedded in concrete. Also, galvanic current measurements of designed sensors were conducted in obtain the charge of sensor embedded in concrete. In this study the results of corrosion behavior of reinforcing steel showed a consistence among the data obtained by open-circuit potential monitoring LPR and EIS measurements. Steel/copper sensor showed a good correlation in concrete environment between sensor output and corrosion rate of steel bar. However, there was no relationship between steel/stainless steel sensor output and corrosion rate of steel bar due to the low oalvanic current output. Through the relationship between the steel/copper sensor output and the corrosion rate of reinforcing steel, the real corrosion damage of the reinforcing steel can be detected. Consequently, this confirms that the galvanic sensor system is a good method for detection of corrosion in reinforced concrete.
机译:在混凝土环境中,传感器输出与钢筋腐蚀速率之间的相关性得到了证实。使用开路电势,线性极化电阻(LPR)测量和电化学阻抗谱(EIS)来评估嵌在混凝土中的钢筋的腐蚀行为。此外,对设计的传感器进行了电流测量,以获得嵌入混凝土中的传感器电荷。在这项研究中,钢筋腐蚀行为的结果表明,通过开路电势监测LPR和EIS测量获得的数据之间具有一致性。钢/铜传感器在混凝土环境中显示出传感器输出与钢筋腐蚀速率之间的良好相关性。然而,由于低的交流电流输出,钢/不锈钢传感器的输出与钢筋的腐蚀速率之间没有关系。通过钢/铜传感器输出与钢筋腐蚀速率之间的关系,可以检测出钢筋的实际腐蚀损伤。因此,这证实了电流传感器系统是检测钢筋混凝土中腐蚀的一种好方法。

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