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Theoretical and experimental study of microcell and macrocell corrosion in patch repairs of concrete structures

机译:混凝土构件修补中微孔和大孔腐蚀的理论和实验研究

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摘要

Patch repair is commonly used to rectify localized corrosion induced damage in concrete structures. However, inadequate durability in patch repair systems caused by new corrosion attack is prevalent. From the prevailing understanding, the mechanism is attributed to macrocell corrosion formed between repaired area (called patch) and its adjacent unrepaired area (called substrate), and thereby ensuring electrochemical compatibility between the two areas is deemed to be the key element to reduce the corrosion risk and thus to achieve a successful repair. This paper examined the corrosion mechanism and the concept of compatibility in patch repair systems from fundamental electrochemical principles and experimental verification. It was illustrated that both macrocell and microcell corrosion mechanisms could play significant roles, and the total corrosion could be underestimated if the latter is overlooked. Although the incompatibility serves as the driving force for the macrocell corrosion, in light of corrosion kinetics, it was shown that the corrosion magnitude depends more on the individual corrosion kinetics of the anode or cathode.
机译:修补修补程序通常用于纠正混凝土结构中局部腐蚀引起的损坏。然而,由于新的腐蚀攻击而导致的修补修复系统的耐久性不足是普遍存在的。从普遍的理解来看,该机理归因于修复区域(称为贴片)与其相邻的未修复区域(称为基底)之间形成的大单元腐蚀,因此确保这两个区域之间的电化学相容性被认为是减少腐蚀的关键因素冒险,从而实现成功的修复。本文从基本的电化学原理和实验验证出发,研究了修补修复系统中的腐蚀机理和相容性概念。结果表明,大电池和微电池的腐蚀机理都可能起重要作用,如果忽略后者,总腐蚀可能会被低估。尽管不相容性是大电池腐蚀的驱动力,但是从腐蚀动力学的角度来看,已表明腐蚀程度更多地取决于阳极或阴极的各个腐蚀动力学。

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