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Correlation between surface crack width and steel corrosion in reinforced concrete

机译:钢筋混凝土表面裂纹宽度与钢腐蚀的相关性

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Reinforced concrete structures are subjected to weather conditions, chemical attack and other sources of deterioration that can affect their performance. In particular, corrosion of the internal steel reinforcement is considered to be one of the main causes of structural deterioration. A possible consequence of corrosion is cracking of the surrounding concrete. Visual inspections are often used to inform asset management strategies. Finding a relationship between cracks that are visible on the outer surface of a structure and corrosion of the internal reinforcement can be helpful when making assessment decisions. To this end, unconfined cylindrical concrete specimens with an embedded steel bar have been subjected to accelerated corrosion using an impressed current density of 200μA/cm2, leading to steel mass losses between 5-24%. This paper discusses the measured correlation between corrosion-induced surface crack widths and degree of reinforcement corrosion. The tests highlighted some limitations of a set-up that is commonly adopted for accelerated corrosion and concentric pull-out bond testing. The findings of this study represent a first step towards the standardisation of accelerated corrosion testing procedures using an impressed current.
机译:钢筋混凝土结构受到可能影响其性能的天气条件,化学攻击和其他恶化来源。特别是,内钢筋的腐蚀被认为是结构劣化的主要原因之一。腐蚀的可能结果是周围混凝土的开裂。目视检查通常用于通知资产管理策略。在制作评估决策时,在结构和内部加强件的外表面上可见的裂缝之间的关系可以有所帮助。为此,使用具有200μA/ cm2的压印电流密度的带嵌入钢筋的无束缚的圆柱形混凝土样品,其引起钢质量损失在5-24%之间。本文讨论了腐蚀引起的表面裂纹宽度与增强腐蚀程度之间的相关性的相关性。该测试突出了设置的一些限制,通常采用加速腐蚀和同心拉出键测试。本研究的结果代表了使用压印电流的加速腐蚀测试程序标准化的第一步。

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