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Corrosion Macrocell Development in Reinforced Concrete with Repair UHPC

机译:维修UHPC钢筋混凝土中的腐蚀宏壳开发

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Reinforced concrete marine bridges are susceptible to corrosion. In conventional repairs, a structurally damaged element is often restored with repair patches. Due to the presence of low-level chlorides in the remaining concrete, incipient anodes can develop and lead to the halo effect which is the main reason of short-lived repair. Ultra-high-performance concrete (UHPC) has been promoted as a durable construction material that can provide a barrier to corrosion due to its low permeability, ideally resulting in a durable repair solution with no need for other corrosion control systems. Other material conditions afforded by UHPC such as concrete resistivity, internal moisture availability and oxygen availability will influence the level of galvanic coupling between steel in the dissimilar UHPC repair material and the existing concrete with vestigial low-level chloride concentrations. In this study, the extent of macrocell development between the dissimilar concrete materials was examined to identify possible benefits and challenges of utilizing UHPC as a repair material for reinforced concrete marine bridges.
机译:钢筋混凝土海桥易受腐蚀的影响。在传统的修理中,通常用修复贴片恢复结构损坏的元件。由于剩余混凝土中存在低水平的氯化物,初期阳极可以发育并导致晕圈效应,这是短寿命修复的主要原因。超高性能混凝土(UHPC)已被推广为耐用的施工材料,可以提供由于其低渗透性而腐蚀,理想情况下导致无需其他腐蚀控制系统的耐用修复解决方案。由UHPC提供的其他材料条件如混凝土电阻率,内部水分可用性和氧可用性,将影响不同的UHPC修复材料中钢之间的电流耦合水平和具有痕量低水平氯化物浓度的现有混凝土。在这项研究中,研究了不同混凝土材料之间的宏小区开发的程度,以确定利用UHPC作为钢筋混凝土船舶修复材料的可能效益和挑战。

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