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Towards understanding corrosion initiation in concrete – influence of local concrete properties in the steel-concrete interfacial zone

机译:理解混凝土中的腐蚀起因–钢混凝土界面区域中局部混凝土性能的影响

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Chloride-induced corrosion is the most common deterioration process for reinforced infrastructure objects. Improving the understanding of the conditions for initiation of localized corrosion is urgently needed. Research is focused on the influence of “defects” at the steel-concrete interface (SCI), as these weak points might be responsible for corrosion initiation. In contrast to numerous studies with “lab concrete”, this study reports results from reinforced concrete cores drilled from old infrastructure objects containing a non-corroding rebar. In contrast to laboratory studies, this guarantees real conditions at the SCI comprising also irregularities such as air voids, plastic settlement voids, cracks, etc. This allows to study chloride-induced corrosion in real conditions and to determine the so-called “critical chloride content” Ccrit. Visual inspection of the SCI enables to establish (or not) influences of the local conditions at the SCI and Ccrit. It was found that Ccrit strongly decreased with the carbonation depth, even if the carbonation front had not reached the steel. Moreover, coarse air voids and cracks were in this study not particularly susceptible sites for corrosion initiation.
机译:氯化物引起的腐蚀是钢筋基础设施物体最常见的劣化过程。迫切需要加强对引发局部腐蚀的条件的了解。研究集中在钢-混凝土界面(SCI)上的“缺陷”的影响上,因为这些弱点可能是引起腐蚀的原因。与“实验室混凝土”的众多研究相比,本研究报告了从包含不腐蚀钢筋的旧基础设施对象钻取的钢筋混凝土芯的结果。与实验室研究相反,这保证了SCI的真实条件,其中还包括不规则性,例如空气空隙,塑料沉降空隙,裂缝等。这允许在真实条件下研究氯化物引起的腐蚀并确定所谓的“临界氯化物”。内容”评论。目视检查SCI可以确定(或不确定)SCI和Ccrit的当地条件的影响。已发现,即使碳化前沿未到达钢中,Ccrit也随着碳化深度而大大降低。此外,在该研究中,粗大的空气空隙和裂纹不是特别容易引起腐蚀的部位。

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