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Instant performance verification after electrochemical chloride extraction by enhanced corrosion testing

机译:通过增强的腐蚀测试验证电化学氯化物萃取后的即时性能验证

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Electrochemical chloride extraction (ECE) is meant to re-establish the corrosion protection of concrete for the embedded reinforcement by removing chloride non-destructively and by enhancing the alkalinity of the rebar surrounding concrete. Both effects depend on various parameters, such as concrete cover, rebar spacing, chloride profile (especially if chloride ingress is deeper than the outside rebar layer) and concrete permeability. Often these parameters require long or multi-stage treatments, which basically can achieve any desired target level of chloride profile and impressed charge, but become a costly solution after a while. The acceptance criteria mentioned in CEN TS 14038-2 clause 8.6 refer to the achieved chloride content and to the amount of impressed charge, which are the conventional, easy measurable, but not direct parameters for evaluating the corrosion activity. A third parameter – the re-measurement of potentials for assessing (intended) low potential gradients and more positive average potentials – requires some weeks to months of depolarization and evaporation of water, before such a measurement can be applied successfully. A promising approach for an instant performance testing after an ECE treatment has been made on several occasions with follow-up measurements of electrolyte resistance, polarization resistance and corrosion current. Convincing changes towards significantly lower corrosion activity could be obtained (and compared to known classified values) – regardless of sometimes high residual chloride and very wet concrete. These data could be verified when re-assessed after some weeks, so enhanced corrosion measurements seem to be a useful tool for either establishing that the designed treatment time has been sufficient or to check on possible earlier termination of the treatment during a running ECE.
机译:电化学氯化物萃取(ECE)旨在通过非破坏性地去除氯化物并增强钢筋周围混凝土的碱度,从而为埋入式钢筋重新建立混凝土的防腐保护。两种效果均取决于各种参数,例如混凝土覆盖层,钢筋间距,氯化物分布(特别是如果氯化物进入的深度大于外部钢筋层)和混凝土的渗透性。通常,这些参数需要长期或多阶段的处理,基本上可以达到任何所需的目标氯化物分布和加料量,但过一会儿便成为昂贵的解决方案。 CEN TS 14038-2第8.6节中提到的验收标准是指所达到的氯化物含量和所加电荷的数量,这是常规的,易于测量的,但不是评估腐蚀活性的直接参数。第三个参数-重新测量电位以评估(预期)低电位梯度和更正的平均电位-需要数周至数月的去极化和水分蒸发,才能成功进行这种测量。在多次测试中,通过对电解质电阻,极化电阻和腐蚀电流的后续测量,已经提出了一种在ECE处理后进行即时性能测试的有前途的方法。可以得出令人信服的改变,使其腐蚀活性大大降低(并与已知的分类值进行比较),而不必考虑有时残留高氯化物和非常湿的混凝土。这些数据可以在几周后重新评估时得到验证,因此增强的腐蚀测量似乎是确定设计的处理时间是否足够或检查运行中的ECE期间可能较早终止处理的有用工具。

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