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Chloride corrosion resistance of double-layer anticorrosive coating in simulated concrete pore solution

机译:模拟混凝土孔溶液中双层防腐涂层的氯化物耐腐蚀性

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ABS T R A C T Steel reinforced concrete structures are widely used in construction projects due to their low cost and high load-bearing capacity. The service life is inevitably reduced because of the steel corrosion during ser-vice. Here, a double-layer anti-corrosion strategy was proposed for the low carbon steel used in chloride corrosion environment. A super-hydrophobic anti-corrosion coating was fabricated on the surface of low carbon steel bars by an environment-friendly and safe method. The corrosion resistance of super-hydrophobic low carbon steel was studied in a chlorine-containing simulated concrete pore solution. Electrochemical test results showed that super-hydrophobic low carbon steel had better chlorine corro-sion resistance than ordinary low carbon steel. Moreover, the effects of three different modification methods on the chloride corrosion resistance of super-hydrophobic low carbon steel were compared. The results of electrochemical tests and corrosion immersion experiments showed that the super-hydrophobic surface obtained through a combination of physical and chemical modification had good corrosion resistance. The corrosion inhibition rate of the super-hydrophobic samples was up to 97.1%. It is expected that the super-hydrophobic low carbon steel with a dual anti-corrosion layer will play a significant role in the corrosion protection of steel reinforced concrete structures.(c) 2021 Elsevier Ltd. All rights reserved.
机译:ABS T R A C T钢筋混凝土结构由于其低成本和高承载能力而广泛应用于施工项目。由于Ser-副期间的钢腐蚀,使用寿命不可避免地减少。这里,提出了一种双层防腐蚀策略,用于氯化物腐蚀环境中使用的低碳钢。通过环保和安全的方法在低碳钢筋表面上制造超疏水性防腐蚀涂层。在含氯的模拟混凝土孔溶液中研究了超级疏水性低碳钢的耐腐蚀性。电化学试验结果表明,超疏水性低碳钢具有比普通低碳钢更好的氯腐蚀性耐腐蚀性。此外,比较了三种不同改性方法对超级疏水性低碳钢的氯化物耐腐蚀性的影响。电化学试验和腐蚀浸渍实验结果表明,通过物理和化学改性的组合获得的超疏水表面具有良好的耐腐蚀性。超疏水性样品的腐蚀抑制率高达97.1%。预计具有双防腐蚀层的超级疏水性低碳钢将在钢筋混凝土结构的腐蚀保护中发挥重要作用。(c)2021 elestvier有限公司保留所有权利。

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