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Corrosion resistance of galvanized steel in concrete: effect of wetdry cycles in chloride solution after carbonation process

机译:镀锌钢混凝土耐腐蚀性:碳化过程后氯化物溶液中湿润循环的影响

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摘要

The effect of chloride ions on corrosion resistance of galvanized steel in carbonated concrete was investigated. Galvanized steel sheets were embedded in cubic concrete specimens manufactured with a 52.5 R Portland cement; after curing in atmosphere for 39 days, the concrete specimens were submitted to carbonation and then to wet-dry cycles both in a 3.5% NaCl solution and in tap water. Results show that concrete carbonation destroys the passivating layer of calcium hydroxyzincate, with formation of less protective products. Wet-dry cycles in tap water after carbonation do not increase appreciably corrosion rate of galvanized steel with respect to that measured in not carbonated concrete. On the contrary, corrosion rate measurements performed during wet-dry cycles in 3.5% NaCl solution, after concrete carbonation, indicate that in these conditions galvanized steel is not passive.
机译:研究了氯离子对碳酸混凝土镀锌钢的耐腐蚀性的影响。镀锌钢板嵌入着由52.5克尔兰地水泥制造的立方混凝土标本中;在大气中固化39天后,将混凝土样本提交至碳酸化,然后在3.5%NaCl溶液中和自来水中湿干循环。结果表明,混凝土碳化破坏了羟基嘧啶钙钝化层,形成了更少的防护产物。碳酸化后自来水中的湿干循环不会增加镀锌钢的显着腐蚀速率,而不是在不碳酸混凝土中测量的镀锌钢。相反,在混凝土碳酸化后的3.5%NaCl溶液中湿干循环期间进行的腐蚀速率测量,表明在这些条件下,镀锌钢不是被动的。

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