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Identification of the reinforcing steel's corrosion state in RC beams based on electrochemical sensor

机译:基于电化学传感器的钢筋混凝土梁中钢筋腐蚀状态识别

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摘要

Purpose - The purpose of this paper is to present a novel five-electrode electrochemical corrosion sensor. Health degradation by the corrosion of steel in civil engineering is a persistent problem. Structural health monitoring (SHM) techniques, including embedded sensors, can greatly improve the quantification of the steel corrosion information, which can lead to promote assessments of structural safety and serviceability. To integrate the corrosion monitoring system in future, the corrosion sensor and the monitoring methods have been explored here in advance. Also, the corrosion monitoring system has been applied preliminarily in the investigation of reinforcing concrete (RC) beams. Design/methodology/approach - First, a novel five-electrode electrochemical corrosion sensor has been developed as the hardware to provide the platform for corrosion monitoring methods. Second, half-cell potential of the RC beams has been measured before and after corrosion. Third, galvanostatic step method has been used to excite the steel-concrete system, and the transient response of the system has been obtained and analyzed. Finally, wavelet transform algorithm has been established to analyze the electrochemical noise (EN) data of the steel bars in RC beams. Findings - The results show that the corrosion sensor can be used effectively as the hardware to support the electrochemical measuring techniques. Much valuable information which is extracted by analyzing the potential response to the galvanostatic pulse excitation can be applied to determine the general corrosion state of the reinforcing steel. For pitting corrosion, the energy distribution plot of EN can be adopted as a benchmark method to identify the presence of the corrosion pit. Originality/value - The paper provides the key techniques for a SHM system to realize corrosion monitoring of large-scale RC structures in the future.
机译:目的-本文的目的是提出一种新颖的五电极电化学腐蚀传感器。在土木工程中,由于钢的腐蚀而导致的健康恶化是一个长期存在的问题。结构健康监测(SHM)技术(包括嵌入式传感器)可以大大改善钢腐蚀信息的量化,从而可以促进对结构安全性和可维修性的评估。为了将来集成腐蚀监测系统,这里已经预先探索了腐蚀传感器和监测方法。此外,腐蚀监测系统已初步应用于钢筋混凝土(RC)梁的研究中。设计/方法/方法-首先,已开发出一种新型的五电极电化学腐蚀传感器作为硬件,以提供腐蚀监测方法的平台。其次,在腐蚀之前和之后都测量了RC梁的半电池电位。第三,采用恒电流步进法激励钢-混凝土系统,获得并分析了系统的瞬态响应。最后,建立了小波变换算法来分析钢筋混凝土梁中钢筋的电化学噪声(EN)数据。研究结果-结果表明,腐蚀传感器可以有效地用作支持电化学测量技术的硬件。通过分析对恒电流脉冲激励的电势响应而提取的许多有价值的信息可用于确定钢筋的一般腐蚀状态。对于点蚀,可以采用EN的能量分布图作为确定腐蚀点存在的基准方法。原创性/价值-本文为SHM系统提供了实现未来大型RC结构腐蚀监测的关键技术。

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