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首页> 外文期刊>Journal of Infrastructure Systems >Measurement of Accelerated Steel Corrosion in Concrete Using Ground-Penetrating Radar and a Modified Half-Cell Potential Method
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Measurement of Accelerated Steel Corrosion in Concrete Using Ground-Penetrating Radar and a Modified Half-Cell Potential Method

机译:探地雷达和改进的半电池电位法测量混凝土中的加速钢腐蚀

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A new approach is presented to evaluate corrosion of steel bars in concrete by 1.5- and 2.6-GHz ground-penetrating radar (GPR) and a modified half-cell potential method. Changes in time-lapsed travel times, amplitudes, and peak frequencies that are associated with short-time Fourier transform spectrograms of the bar reflections were continuously measured. The year-long corrosion process of the reinforcement bar rapidly accelerated within a few days by impressing direct current across a pair of embedded reinforcement bars, which served as the anode and cathode. When corrosion started, the travel times, amplitudes, and frequency spectra of the bar reflection changed. The results were analyzed by dividing the material's response into three phases (NaCl contamination, depassivation, and corrosion). The writers attribute the phenomena of the first two phases to the ionic conduction and interfacial polarization effect, described in the low-frequency regime of complex dielectric permittivity outlined in the Maxwell-Wagner effect. The remaining phase corresponds with the appearance of large and multiple interfaces among steel, concrete, corrosion product, and cracks, in addition to the upward movement of the corrosion product to the concrete surface that intercepts wider radar footprints. The findings, based on time lapse measurements, provide a basis to further apply the GPR technique to spatial measurements in laboratory and field studies.
机译:提出了一种通过1.5 GHz和2.6 GHz探地雷达(GPR)以及改进的半电池电位法评估混凝土中钢筋腐蚀的新方法。连续测量随时间变化的传播时间,幅度和峰值频率的变化,这些变化与条形反射的短时傅立叶变换谱图相关。通过在一对用作阳极和阴极的嵌入式钢筋上施加直流电,几天之内钢筋的腐蚀过程在几天之内迅速加速。当腐蚀开始时,条形反射的传播时间,振幅和频谱发生了变化。通过将材料的响应分为三个阶段(NaCl污染,钝化和腐蚀)来分析结果。作者将前两相的现象归因于离子传导和界面极化效应,这在麦克斯韦-瓦格纳效应中概述的复介电常数的低频状态中进行了描述。剩余阶段与钢,混凝土,腐蚀产物和裂缝之间大而多的界面的出现相对应,此外腐蚀产物向混凝土表面的向上运动会拦截更大的雷达覆盖范围。这些发现基于时间推移测量,为进一步将GPR技术应用于实验室和现场研究的空间测量提供了基础。

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