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Superhydrophobic aluminum alloy surfaces prepared by chemical etching process and their corrosion resistance properties

机译:化学腐蚀工艺制备的超疏水铝合金表面及其耐腐蚀性能

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Superhydrophobic aluminum alloy surfaces are obtained by chemical etching using 1 M NaOH solution followed by passivation using 0.01 M ethanolic stearic acid (SA) solution. The formation of low surface energy aluminum stearate takes place during the passivation process between stearic acid and hydroxyl group-terminated aluminum alloy surfaces. A schematic model of the SA passivation process on the -OH terminated Al-surfaces is presented in this work. The flake-like micro-nanostructure morphology of the low surface energy aluminum stearate increases the water contact angle by more than 150, demonstrating the superhydrophobic properties. The corrosion current density reduces and polarization resistance increases systematically with increasing passivation time. The polarization resistance, calculated from the Tafel curve of the superhydrophobic surfaces prepared by stearic acid passivation for 60 min, is determined to be 137 times larger than that of the as-received aluminum alloy substrate. Similarly, the modulus of impedance, as-determined from electrochemical impedance spectroscopy (EIS), is found to be 70 times larger for the superhydrophobic surfaces compared with the as-received aluminum alloy surface. These results demonstrate that the superhydrophobic aluminum alloy surfaces created by chemical etching followed by passivation have superior corrosion resistance properties than the as-receive aluminum alloy substrate. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过使用1 M NaOH溶液进行化学蚀刻,然后使用0.01 M的乙醇硬脂酸(SA)溶液进行钝化处理,可获得超疏水铝合金表面。低表面能硬脂酸铝的形成发生在硬脂酸与羟基封端的铝合金表面之间的钝化过程中。在这项工作中,提出了在-OH终止的Al表面上进行SA钝化过程的示意图。低表面能硬脂酸铝的薄片状微纳米结构形态使水接触角增加了150倍以上,证明了其超疏水性。随着钝化时间的增加,腐蚀电流密度降低,极化电阻逐渐增加。由硬脂酸钝化60分钟制备的超疏水性表面的Tafel曲线计算出的抗极化强度确定为所接受的铝合金基板的137倍。类似地,由电化学阻抗谱法(EIS)确定的阻抗系数对于超疏水性表面来说是所接受的铝合金表面的70倍。这些结果表明,通过化学蚀刻然后钝化形成的超疏水铝合金表面具有比刚接收的铝合金基板优异的耐腐蚀性。 (C)2015 Elsevier B.V.保留所有权利。

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