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Effect of Osmotic Pressure by Salt Concentration on Corrosion Resistance of Anti-Corrosive Paint

机译:盐分渗透压对防腐涂料耐蚀性的影响

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Recently, many types of constructional steels have been often exposed to severely corrosive environments due to acid rain with increasing environmental contamination. To control corrosion problems, a painting protection method has been widely applied to numerous constructional steels on land as well as offshore. Therefore, development of anti-corrosive paint with good quality of corrosion resistance is very important from an economical perspective. In this study, four types of anti-corrosive paint were coated to test specimens, and then, were immersed in various salt solutions (0.1, 3 and 9% NaCl solution) for 11 days. Corrosion resistance of these samples by effect of osmotic pressure with various salt concentration was investigated with electrochemical methods such as measurement of corrosion potential, impedance and corrosion current density. Corrosion current density of these samples submerged in 0.1% NaCl solution exhibited highest value than those immersed in 3% and 9% NaCl solutions because water, dissolved oxygen and chloride ion etc. is easily to invade towards inner side of coating film due to increasing osmotic pressure compared to 3% and 9% NaCl solutions. However, corrosion current densities of all samples in the case of submerged in 9% NaCl solution exhibited higher values compared to 3% NaCl solution.Thus, a large amount of chloride ion dissolved in 9% NaCl solution plays a more critical role in corrosion behavior of coated steel rather than osmotic pressure. Consequently, the corrosion mechanism between coated steel and bare steel plates is different from each other because of presence of osmotic pressure between salt solution and coating film of coated steel plate. As a result, corrosion resistance of tcoated steel plate may be depend on the osmotic pressure as well as salt concentration.
机译:近来,由于酸雨和越来越多的环境污染,许多类型的建筑用钢经常暴露于严重腐蚀的环境中。为了控制腐蚀问题,喷漆保护方法已广泛应用于陆上和海上的多种建筑钢材。因此,从经济的角度出发,开发具有良好耐腐蚀性的防腐涂料非常重要。在这项研究中,将四种类型的防腐涂料涂覆到测试样品上,然后将其浸入各种盐溶液(0.1%,3%和9%NaCl溶液)中11天。利用电化学方法,如腐蚀电位,阻抗和腐蚀电流密度的测量,研究了在不同盐浓度下渗透压对样品的耐腐蚀性。这些样品在0.1%NaCl溶液中的腐蚀电流密度显示出比在3%和9%NaCl溶液中浸泡的样品更高的腐蚀电流密度,这是因为水,溶解氧和氯离子等由于渗透性增加而易于向涂膜内侧侵入。与3%和9%NaCl溶液相比但是,浸泡在9%NaCl溶液中时所有样品的腐蚀电流密度都比3%NaCl溶液高,因此,溶解在9%NaCl溶液中的大量氯离子在腐蚀行为中起着更关键的作用涂层钢而不是渗透压。因此,由于盐溶液与涂层钢板的涂膜之间存在渗透压,涂层钢板与裸钢板之间的腐蚀机理彼此不同。结果,涂层钢板的耐腐蚀性可能取决于渗透压以及盐浓度。

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