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Corrosion Potential Sensor for Remote Monitoring of Civil Structure Based on Printed Circuit Board Sensor

机译:基于印刷电路板传感器的用于土木结构远程监测的腐蚀电位传感器

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We present a printed circuit board-based wireless inductively coupled corrosion potential sensor for monitoring corrosion of steel-reinforced concrete civil infrastructure. The sensor is a passive LC coil resonator whose resonant frequency varies owing to the corrosion potential produced by two electrodes connected across a voltage-controlled capacitor. The junction capacitance of the voltage-controlled capacitor also varies according to the potential generated by the two electrodes, which is in turn responsible for changing resonant frequency of the sensor. The two electrodes are a stainless steel reference electrode and a steel reinforcement electrode. An external interrogator coil coupled with the sensor coil monitors the sensor resonant frequency shift remotely by measuring the impedance change from the source end. The sensor has a sensitivity of ${sim}{rm 1.2}~{rm kHz}/{rm mV}$ both before and after it is embedded in the cement-based mortar used for testing the sensor. The sensor can be used to sense the corrosion susceptibility of existing structures by embedding the corrosion electrodes in new grout within a small slot formed in an existing structure. Using this approach, weight concentrations of NaCl mixed in cement-based mortars of greater than 2%–3% were detected. Accelerated corrosion tests on embedded sensors in simulations of both new and existing structure demonstrated corrosion potential resolution of less than 10 mV and an uncertainty of less than 50 mV. The sensor is simple in design, inexpensive, and passive making it a battery-less option for long-term corrosion monitoring, and widely deployable for civil structure.
机译:我们提出了一种基于印刷电路板的无线感应耦合腐蚀电位传感器,用于监测钢筋混凝土民用基础设施的腐蚀。该传感器是无源LC线圈谐振器,其谐振频率由于跨压控电容器连接的两个电极产生的腐蚀电位而变化。压控电容器的结电容也根据两个电极产生的电势而变化,这又负责改变传感器的谐振频率。这两个电极是不锈钢参比电极和钢增强电极。与传感器线圈耦合的外部询问器线圈通过测量从源端开始的阻抗变化来远程监视传感器谐振频率偏移。传感器的灵敏度为 $ {sim} {rm 1.2}〜{rm kHz} / {rm mV} $ 将其嵌入用于测试传感器的水泥基砂浆中之前和之后。通过将腐蚀电极嵌入新浆液中,该传感器可用于检测现有结构的腐蚀敏感性,该新浆液位于现有结构中形成的小缝隙中。使用这种方法,可以检测到水泥基砂浆中混合的NaCl的重量浓度大于2%–3%。在新的和现有结构的模拟中,对嵌入式传感器进行的加速腐蚀测试表明,腐蚀电位分辨率小于10 mV,不确定度小于50 mV。该传感器设计简单,价格低廉且无源,使其成为长期腐蚀监测的无电池选择,并且可广泛用于土木结构。

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