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Electrolytic Coloring of Anodized Aluminum by Copper

机译:铜阳极氧化铝的电解着色

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It is important to generate aluminum oxide layer on the surface of aluminum in order to enhance the adhesion of the dye molecules in coloring aluminum industry. One of the major advantages of aluminum is the formation of a resistant oxide layer naturally, but the thickness of this layer is not high enough and it should be damaged due to lack of mechanical strength. However, the thickness of oxide layer can be increased through anodizing; this process improves its abrasion and corrosion resistance as well as its mechanical properties. In the present study, specimens of pure aluminum were anodized under galvanostatic condition in sulfuric acid electrolyte and porous nanostructured aluminum oxide layer was formed. Porosity of the anodized layer was controlled by optimizing the working conditions such as electrolyte concentration, anodizing time and current density. Finally, the specimens were electrolytically colored by applying alternating current to copper (Cu) solutions. Colored coatings were created at constant voltage and different coloring duration. The results indicated that the shade of different metal ions can be optimized by controlling the coloring parameters, the longer time of coloring results in the darker colors. The samples were examined by X-Ray Diffraction (XRD) spectroscopy and Scanning Electron Microscopy (SEM) and electrochemical test.
机译:重要的是在铝表面上产生氧化铝层,以增强染料分子在着色铝制工业中的粘附性。铝的主要优点之一是自然形成抗氧化物层,但该层的厚度不够高,并且由于缺乏机械强度而应损坏。然而,氧化物层的厚度可以通过阳极氧化而增加;该过程改善了其耐磨性和耐腐蚀性以及其机械性能。在本研究中,在硫酸电解质的电镀条件下阳极氧化纯铝的标本,形成多孔纳米结构氧化铝层。通过优化诸如电解质浓度,阳极氧化时间和电流密度的工作条件来控制阳极氧化层的孔隙率。最后,通过向铜(Cu)溶液施加交流电来电解着标本。在恒定电压和不同着色持续时间下产生彩色涂层。结果表明,通过控制着色参数,可以优化不同金属离子的阴影,较长的着色时间导致较深的颜色。通过X射线衍射(XRD)光谱和扫描电子显微镜(SEM)和电化学测试来检查样品。

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