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首页> 外文期刊>Journal of materials in civil engineering >Effects of Mill Scale and Steel Type on Passivation and Accelerated Corrosion Behavior of Reinforcing Steels in Concrete
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Effects of Mill Scale and Steel Type on Passivation and Accelerated Corrosion Behavior of Reinforcing Steels in Concrete

机译:钢鳞和钢种对钢筋在混凝土中钝化和加速腐蚀行为的影响

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摘要

Abstract: The influence of mill scale and steel type on the passivation capability and impressed current-induced accelerated corrosion behavior of reinforcing steels in concrete was studied using electrochemical impedance spectroscopy (EIS) and backscattered electron (BSE) images. Conventional low-carbon (LC) reinforcing steel and Cr-bearing low-alloy (LA) reinforcing steel with and without mill scale were prepared. After natural passivation and accelerated corrosion, it was confirmed that the initial passivation capability of steels and the corrosion-induced concrete cracking were significantly affected by the mill scale on steel surface. Also, the steel type played an important role on the characteristics of the corrosion layers as well as the long-term passivation capability. Furthermore, the corrosion pattern of steels induced by this accelerated corrosion was compared with that after long-term natural exposure to chloride solution.
机译:摘要:利用电化学阻抗谱(EIS)和背散射电子(BSE)图像,研究了轧制鳞片和钢类型对钢筋在混凝土中的钝化能力和外加电流诱导的加速腐蚀行为的影响。制备了具有和没有轧机氧化皮的常规低碳(LC)增强钢和含铬低合金(LA)增强钢。经过自然钝化和加速腐蚀后,可以确定钢的初始钝化能力和腐蚀引起的混凝土开裂受到钢表面氧化皮的显着影响。同样,钢种在腐蚀层的特性以及长期钝化能力方面也起着重要作用。此外,将这种加速腐蚀引起的钢的腐蚀模式与长期自然暴露于氯化物溶液后的腐蚀模式进行了比较。

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