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Corrosion Characteristics of Reinforced Steel Bar Emedded in Mortar Specimen(W/C: 0.4) Aged 5 Years in Seawater

机译:砂浆标本(W / C:0.4)埋藏的钢筋的腐蚀特性(W / C:0.4)海水5年

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Reinforced concrete structures have been increasingly widely used in numerous industrial fields. These structures are often exposed to severely corrosive environments such as sea water, contaminated water, acid rain, and the seashore. Thus, corrosion problems of the steel bars embedded in concrete are very important from a safety and economic point of view. In this study, the effects of cover thickness on the corrosion properties of reinforced steel bar embedded in mortar specimen were investigated using electrochemical methods such as corrosion potentials, polarization curves, cyclic voltammograms, galvanostat and potentiostat. Corrosion potentials shifted in the noble direction, and the value of AC impedance also exhibited a higher value with decreasing cover thickness, furthermore, polarization resistance also increased with decreasing cover thickness. This is probably that the thinner cover thickness, it is easy for the dissolved oxygen and chloride ion to intrude and diffuse to the steel bar, thereby making it easier to corrode on the steel surface compared to thicker cover thickness, which is resulted in forming the corrosive products on the steel surface. Therefore, it is considered that the corrosive products plays a role to provide nobler value of corrosion potential and higher value of impedance. Consequently, it seems that the corrosion resistance of inner steel bar may depend on mainly not cover thickness but the resistance polarization due to corrosive products in the case of immerged for 5 years in this experiment.
机译:钢筋混凝土结构已越来越广泛应用于众多工业领域。这些结构通常暴露于严重腐蚀性环境,例如海水,受污染的水,酸雨和海边。因此,嵌入混凝土中的钢筋的腐蚀问题是从安全和经济的角度来看非常重要。在这项研究中,使用电化学方法等电化学方法研究了覆盖砂浆样本中嵌入砂浆样本的增强钢杆腐蚀性能的影响。腐蚀电位在惰性方向上移动,并且AC阻抗的值也具有较高的值,随着覆盖厚度的降低,偏振电阻也随着覆盖厚度的降低而增加。这可能是较薄的覆盖厚度,溶解氧和氯离子容易侵入并扩散到钢棒上,从而使得与厚度厚度相比,更容易腐蚀钢表面,这导致形成钢表面上的腐蚀性产品。因此,认为腐蚀性产品发挥作用,以提供腐蚀潜力的更高贵的值和较高的阻抗价值。因此,似乎内钢杆的耐腐蚀性可能取决于主要不覆盖厚度,而是由于腐蚀性产品而导致的电阻极化在该实验中灭绝5年。

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