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A New Corrosion Sensor to Determine the Start and Development of Embedded Rebar Corrosion Process at Coastal Concrete

机译:用于确定沿海混凝土埋入式钢筋腐蚀过程的开始和发展的新型腐蚀传感器

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摘要

The corrosion of reinforcements induced by chloride has resulted to be one of the most frequent causes of their premature damage. Most corrosion sensors were designed to monitor corrosion state in concrete, such as Anode-Ladder-System and Corrowatch System, which are widely used to monitor chloride ingress in marine concrete. However, the monitoring principle of these corrosion sensors is based on the macro-cell test method, so erroneous information may be obtained, especially from concrete under drying or saturated conditions due to concrete resistance taking control in macro-cell corrosion. In this paper, a fast weak polarization method to test corrosion state of reinforcements based on electrochemical polarization dynamics was proposed. Furthermore, a new corrosion sensor for monitoring the corrosion state of concrete cover was developed based on the proposed test method. The sensor was tested in cement mortar, with dry-wet cycle tests to accelerate the chloride ingress rate. The results show that the corrosion sensor can effectively monitor chloride penetration into concrete with little influence of the relative humidity in the concrete. With a reasonable corrosion sensor electrode arrangement, it seems the Ohm-drop effect measured by EIS can be ignored, which makes the tested electrochemical parameters more accurate.
机译:氯化物引起的钢筋腐蚀已成为其过早损坏的最常见原因之一。大多数腐蚀传感器都是设计用来监测混凝土中腐蚀状态的,例如Anode-Ladder-System和Corrowatch System,它们广泛用于监测船用混凝土中的氯化物进入。但是,这些腐蚀传感器的监视原理基于宏单元测试方法,因此可能会获得错误的信息,尤其是在混凝土处于干燥或饱和条件下时,由于混凝土电阻会控制宏单元腐蚀而获得错误信息。提出了一种基于电化学极化动力学的快速弱极化法测试钢筋的腐蚀状态。此外,基于提出的测试方法,开发了一种用于监测混凝土表层腐蚀状态的新型腐蚀传感器。该传感器在水泥砂浆中进行了测试,并进行了干湿循环测试,以加快氯离子的浸入速度。结果表明,腐蚀传感器可以有效地监测氯化物渗透到混凝土中,而对混凝土中的相对湿度影响很小。通过合理的腐蚀传感器电极布置,似乎可以忽略掉EIS测量的欧姆滴效应,这使测试的电化学参数更加准确。

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