去极化判据的瞬态和梯度分析。氯化物诱发钢筋腐蚀监测的宝贵工具

Christoph Zausinger, K. Osterminski, C. Gehlen
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引用次数: 0

摘要

本研究的目的是阐明对开裂混凝土中氯化物引起的钢筋腐蚀进行监测的合适方法。去极化梯度和瞬态为钢-混凝土界面的电极动力学和巨胞的几何结构提供了证据。在本研究中,研究了一组有裂缝的、短期暴露于氯化物中的钢筋混凝土试件的腐蚀活性。首先,通过短期高频测量观察到去极化行为,允许具有成本效益的测量活动和稳健的结果。所有的测量间隔都通过梯度分析分开,以实现一致的数值瞬态分析。由于钢筋腐蚀中的大电池的几何形状遵循一系列欧姆电阻的模型,扩散控制电容器和欧姆电阻并联连接,单位时间(秒)的每个去极化曲线的瞬态为当前的电极动力学和大电池几何形状提供了证据。根据达到一定去极化状态所消耗的时间,可以利用瞬态模型来预测腐蚀活性与氯化物进入的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transient and gradient analyses of depolarization criteria. Valuable tools in chloride‐induced rebar corrosion monitoring
The aim of this study is to elucidate suitable methods of corrosion monitoring for chloride‐induced rebar corrosion in cracked concrete. Depolarization gradients and transients provide evidence for the electrode kinetics at the steel–concrete interface and the geometry of the macrocell. In the present study, a set of cracked, short‐term chloride‐exposed, reinforced concrete specimens is investigated in terms of their corrosion activity. Primarily, the depolarization behavior was observed by short‐term high‐frequency measurements, allowing for cost‐effective measurement campaigns and robust results. All measurement intervals are split apart via a gradient analysis to enable a congruent, numerical transient analysis. Since the geometry of macrocells in rebar corrosion follows the model of a series of ohmic resistances with a parallel connection of a diffusion‐controlled capacitor and an ohmic resistance, the transient of each depolarization curve with unit time in seconds provides evidence for the present electrode kinetics and macrocell geometry. According to the time, which is consumed until a certain state of depolarization is reached, transient modeling can be used to predict corrosion activity as a function of chloride ingress.
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