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A novel combined method for fabrication of stable corrosion resistance superhydrophobic surface on Al alloy

机译:一种在铝合金上制备稳定的耐腐蚀超疏水表面的新方法

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In this study, a highly stable superhydrophobic surface with excellent corrosion resistance was fabricated on the 6020 aluminum alloy. In this regard mixed shot peening-etching treatment and silane modification was used. The wettability of surfaces was studied by contact angle measurement. Also, the influence of the shot peening pretreatment on the corrosion resistance of fabricated samples was investigated in 3.5 wt% NaCl aqueous solution, using weight loss, and electrochemical impedance spectroscopy (EIS) tests. The contact angle of 153 degrees +/- 2 and the sliding angle of 8 degrees +/- 2 was obtained on a shot peened sample after silane modification. The corrosion test results show high corrosion resistance of modified shot peened sample which was attributed to the fabricated superhydrophobic surface. Functionalization of the surface with silane has been confirmed by Fourier Transform Infrared Spectroscopy FTIR by showing the Si-O-Si (987 cm(-1)) and Al-Cl (3100 cm(-1)) bonds. The effect of shot peening and silane modification on the morphology of the surfaces were determined by scanning electron microscopy SEM. Furthermore, the chemical stability of the samples during immersion in 3.5 wt. % NaCl solution for 3 days was examined by EIS and SEM tests. Also, the variation of the contact angle with immersion time was recorded. The variation of water contact angle on the superhydrophobic shot peened sample after 72 -hs of immersion time was shown to be negligible (water contact angle of 152 degrees after 3 days). In conclusion the extracted data from these tests confirmed the good chemical stability of the fabricated superhydrophobic surface on the shot peened sample.
机译:在这项研究中,在6020铝合金上制造了具有出色耐腐蚀性的高度稳定的超疏水表面。在这方面,使用了混合喷丸硬化处理和硅烷改性。通过接触角测量研究了表面的润湿性。此外,使用重量损失和电化学阻抗谱(EIS)测试,研究了喷丸预处理对加工样品在3.5 wt%NaCl水溶液中的耐腐蚀性的影响。在硅烷改性后的喷丸处理样品上获得153度+/- 2的接触角和8度+/- 2的滑动角。腐蚀试验结果表明,改性喷丸样品具有较高的耐腐蚀性,这归因于所制造的超疏水表面。傅立叶变换红外光谱(FTIR)FTIR通过显示Si-O-Si(987 cm(-1))和Al-Cl(3100 cm(-1))键证实了硅烷对表面的功能化。通过扫描电子显微镜SEM确定喷丸处理和硅烷改性对表面形态的影响。此外,样品在3.5 wt。通过EIS和SEM测试检查3天的%NaCl溶液。另外,记录接触角随浸入时间的变化。浸泡时间为72小时后,超疏水喷丸处理样品的水接触角变化可忽略不计(3天后水接触角为152度)。总之,从这些测试中提取的数据证实了喷丸处理后的样品的超疏水表面具有良好的化学稳定性。

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