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Fabricating binary anti-corrosion structures containing superhydrophobic surfaces and sturdy barrier layers for Al alloys

机译:制备具有超疏水表面和坚固的铝合金阻隔层的二元防腐结构

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摘要

Aluminum alloys with novel binary anti-corrosion structures on the surface showing superhydrophobic properties were fabricated via chemical etching, anodic oxidation and chemical modification. Surface morphologies and chemical elements of the as-prepared films were investigated by Fourier transform infrared spectrometer, scanning electron microscopy and confocal laser scanning microscope. Surface wettability was investigated by the contact angle meter. Manipulation of surface morphology by anodic oxidation current density and the influence of surface chemical modification on the wettability were investigated. The anti-corrosion properties of the as-prepared films were characterized using an electrochemistry workstation. The results showed that surface water contact angle could reach 156 degrees after chemical modification when the current density of anodic oxidation was 5 A dm(-2). The corrosion potential (Ecorr) was positively increased from -1189 mV for bare Al alloys to -304 mV for the samples anodized at 5 A dm(-2). The synergetic effect between the protective properties of air trapped in a low adhesion superhydrophobic surface and good barrier properties of the barrier layer of anodic oxidation film was remarkably enhanced the corrosion resistance of aluminum alloys. Influences of the anodic oxidation current density and the self-assembled films on the anti-corrosion performance were discussed in detail.
机译:通过化学刻蚀,阳极氧化和化学改性制备了具有超疏水性能的表面具有新型二元防腐结构的铝合金。用傅立叶变换红外光谱仪,扫描电子显微镜和共聚焦激光扫描显微镜研究了所制备薄膜的表面形貌和化学元素。通过接触角仪研究表面润湿性。研究了阳极氧化电流密度对表面形态的操纵以及表面化学改性对润湿性的影响。使用电化学工作站表征所制得膜的防腐性能。结果表明,当阳极氧化电流密度为5 A dm(-2)时,化学改性后地表水接触角可达156度。对于5 A dm(-2)阳极氧化的样品,其腐蚀电位(Ecorr)从裸铝合金的-1189 mV正增加到-304 mV。在低粘附力超疏水表面中捕获的空气的保护性能与阳极氧化膜的阻挡层的良好阻挡性能之间的协同作用显着增强了铝合金的耐腐蚀性。详细讨论了阳极氧化电流密度和自组装膜对防腐性能的影响。

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