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Preparation of Ti–Zr-Based Conversion Coating on 5052 Aluminum Alloy, and Its Corrosion Resistance and Antifouling Performance

机译:5052铝合金表面Ti-Zr基转化膜的制备及其耐蚀性能和防污性能

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A chemical conversion coating on 5052 aluminum alloy was prepared by using K2ZrF6 and K2TiF6 as the main salts, KMnO4 as the oxidant and NaF as the accelerant. The surface morphology, structure and composition were analyzed by SEM, EDS, FT–IR and XPS. The corrosion resistance of the conversion coating was studied by salt water immersion and polarization curve analysis. The influence of fluorosilane (FAS-17) surface modification on its antifouling property was also discussed. The results showed that the prepared conversion coating mainly consisted of AlF3·3H2O, Al2O3, MnO2 and TiO2, and exhibited good corrosion resistance. Its corrosion potential in 3.5 wt % NaCl solution was positively shifted about 590 mV and the corrosion current density was dropped from 1.10 to 0.48 μA cm?2. By sealing treatment in NiF2 solution, its corrosion resistance was further improved yielding a corrosion current density drop of 0.04 μA cm?2. By fluorosilane (FAS-17) surface modification, the conversion coating became hydrophobic due to low-surface-energy groups such as CF2 and CF3, and the contact angle reached 136.8°. Moreover, by FAS-17 modification, the corrosion resistance was enhanced significantly and its corrosion rate decreased by about 25 times.
机译:以K2ZrF6和K2TiF6为主要盐,KMnO4为氧化剂,NaF为促进剂,在5052铝合金上制备了化学转化膜。用SEM,EDS,FT-IR和XPS分析了表面形貌,结构和成分。通过盐水浸泡和极化曲线分析研究了转化膜的耐蚀性。还讨论了氟硅烷(FAS-17)表面改性对其防污性能的影响。结果表明,制备的转化膜主要由AlF3·3H2O,Al2O3,MnO2和TiO2组成,具有良好的耐蚀性。其在3.5wt%NaCl溶液中的腐蚀电位正向偏移约590mV,腐蚀电流密度从1.10降至0.48μA·cm 2。通过在NiF 2溶液中进行密封处理,其耐腐蚀性进一步提高,从而产生了0.04μA·cm 2的腐蚀电流密度下降。通过氟硅烷(FAS-17)表面改性,由于低表面能基团(例如CF2和CF3),转化膜变成疏水性,接触角达到136.8°。此外,通过FAS-17改性,耐蚀性显着提高,腐蚀速率降低了约25倍。

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