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Fabrication of Self-Cleaning Superhydrophobic Surfaces with Improved Corrosion Resistance on 6061 Aluminum Alloys

机译:在6061铝合金上制备具有改善的耐腐蚀性的自清洁超疏水表面

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摘要

Aluminum alloys are widely used, but they are prone to contamination or damage under harsh working environments. In this paper, a self-cleaning superhydrophobic aluminum alloy surface with good corrosion resistance was successfully fabricated via the combination of sand peening and electrochemical oxidation, and it was subsequently covered with a fluoroalkylsilane (FAS) film. The surface morphology, surface wettability, and corrosion resistance were investigated using a scanning electron microscope (SEM), an optical contact angle measurement, and an electrochemical workstation. The results show that binary rough structures and an FAS film with a low surface energy on the Al alloy surfaces confer good superhydrophobicity with a water contact angle of 167.5 ± 1.1° and a sliding angle of 2.5 ± 0.7°. Meanwhile, the potentiodynamic polarization curve shows that the corrosion potential has a positively shifted trend, and the corrosion current density decreases by three orders of magnitude compared with that of the original aluminum alloy sample. In addition, the chemical stability of the as-prepared superhydrophobic surface was evaluated by dripping test using solutions with different pH values for different immersion time. It indicates that the superhydrophobic surface could provide long-term corrosion protection for aluminum alloys. Consequently, the as-prepared superhydrophobic surface has excellent contamination resistance and self-cleaning efficacy, which are important for practical applications.
机译:铝合金已被广泛使用,但在恶劣的工作环境下容易受到污染或损坏。本文通过喷砂处理和电化学氧化相结合的方法成功地制备了具有良好耐腐蚀性的自清洁超疏水铝合金表面,随后在其表面覆盖了氟烷基硅烷(FAS)膜。使用扫描电子显微镜(SEM),光学接触角测量和电化学工作站研究了表面形态,表面润湿性和耐腐蚀性。结果表明,二元粗糙结构和铝合金表面具有较低表面能的FAS膜具有良好的超疏水性,水接触角为167.5±1.1°,滑动角为2.5±0.7°。同时,电位动力学极化曲线表明腐蚀电位呈正向移动趋势,并且腐蚀电流密度与原始铝合金样品相比降低了三个数量级。另外,通过使用具有不同pH值的溶液在不同的浸渍时间下进行滴落试验,评估了所制备的超疏水表面的化学稳定性。这表明超疏水表面可以为铝合金提供长期的腐蚀防护。因此,所制备的超疏水表面具有优异的耐污染性和自清洁功效,这对于实际应用是重要的。

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