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Evaluation of Sealing Process on the Surface Properties of Nanoporous Aluminum Oxide Layers Electrochemically Growth on 1050 Aluminum Alloy Surface

机译:1050铝合金表面电化学生长的纳米氧化铝氧化物层表面性能的密封过程评价

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Thanks to its low density, aluminum and its alloys are extensively used in the transport and construction industries. The improving of aluminum and its alloys corrosion resistance is an extensively studied topic. Different methods are applied to improve the corrosion resistance of aluminum and its alloy: painting, waxing, zinc-chromate priming, conversion coatings and also anodic oxidation. The anodic oxidation is the most used method to fabricate nanoporous aluminum oxide layers, with controlled thickness and pores diameters, on aluminum and its alloys surfaces. The aim of this work is to evaluate the influence of the sealing process of the nanoporous aluminum oxide layers obtained by anodic oxidation on 1050 aluminum alloy surface. Scanning electron microscopy (SEM) was used to observe the morphological structure of untreated and modified surfaces. Corrosion behavior of oxidized 1050 aluminum alloy, sealed oxide layer and untreated 1050 aluminum alloy were investigated using electrochemical methods such as open circuit potential (OCP), electrochemical impedance spectroscopy (EIS) and potentiodynamic polarization (PD). The experimental results show that the anodic oxidation process improve the corrosion resistance of 1050 aluminum substrate and the sealing process improve even more the anticorrosive properties.
机译:由于其低密度,铝及其合金广泛用于运输和建筑行业。改善铝及其合金耐腐蚀性是广泛的研究主题。采用不同的方法来改善铝及其合金的耐腐蚀性:涂漆,打蜡,锌 - 铬酸盐灌注,转化涂层和阳极氧化。阳极氧化是制造纳米多孔氧化铝层的最常用方法,铝及其合金表面的受控厚度和孔径直径。该工作的目的是评估通过在1050铝合金表面上通过阳极氧化获得的纳米多孔氧化铝氧化物层的密封过程的影响。扫描电子显微镜(SEM)用于观察未处理和改性表面的形态学结构。使用电化学方法如开路电位(OCP),电化学阻抗谱(EIS)和电位偏振(PD),研究了氧化1050铝合金,密封氧化物层和未处理的1050铝合金的腐蚀行为,密封氧化物层和未处理的1050铝合金。实验结果表明,阳极氧化工艺提高了1050铝基衬底的耐腐蚀性,密封过程提高了更高的防腐蚀性。

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