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Non contacting corrosion method applied to the steel corrosion rate determination in different solutions and reinforced concrete specimens.

机译:非接触腐蚀法应用于不同溶液和钢筋混凝土试件中钢的腐蚀速率测定。

摘要

All the current techniques used to measure the metallic corrosion require contact with the metal. Particularly, in the case of reinforcement corrosion, this signifies the need to reach the bar that is embedded in the concrete, which may consequently result in the disruption of the integrity of the real structures. This paper explores the feasibility of using a new method for polarizing the reinforcement or any metal in an electrolyte, without the need of direct contact with it. The polarization is obtained through the induction of current from an external electrical field. The current runs through the electrolyte and the metal in parallel, depending on the electrode arrangement. The resulting Polarization Resistance calculated is termed as Inductive, Rp = Rpi . The Inductive is calculated by the model of resistances in parallel, which requires a separate measurement of the electrolyte ohmic resistance. In this study, solutions with several resistivities and concrete specimens with and without chlorides have been used. The results indicate that electrolytes of low resistivity mask the measurement, and consequently, Rpi could not be calculated. In electrolytes with high resistivity, such as concrete, the feasibility is found to depend on the relative values of Re and Rpi
机译:当前用于测量金属腐蚀的所有技术都需要与金属接触。特别地,在钢筋腐蚀的情况下,这意味着需要到达埋入混凝土中的钢筋,因此可能导致破坏真实结构的完整性。本文探讨了使用新方法极化增强材料或电解质中的任何金属而不需要直接接触的可行性。极化是通过感应来自外部电场的电流获得的。电流根据电极排列平行流过电解质和金属。计算出的最终极化电阻称为电感性,Rp = Rpi。电感是通过并联电阻模型计算的,这需要对电解液的欧姆电阻进行单独测量。在这项研究中,已使用具有多种电阻率的溶液以及带有和不带有氯化物的混凝土试样。结果表明,低电阻率的电解质掩盖了该测量结果,因此无法计算Rpi。在具有高电阻率的电解质(例如混凝土)中,发现可行性取决于Re和Rpi的相对值

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