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Effect of alloy types on the electrolytic coloring process of aluminum

机译:合金类型对铝电解着色过程的影响

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The AC electrolytic coloring process at 15 V-rms in acidic tin sulfate solutions for specimens of AA 5083, AA 6111 unheat- and heat-treated was investigated in comparison with pure aluminum. For this purpose, electrochemical techniques, SEM/EDS and XRF were used. The specimens were anodized in sulfuric acid baths under different conditions, prior to electrolytic coloring. The alloy type affects the rate of tin deposition but certain qualitative characteristics and basic aspects of electrolytic coloring mechanisms are similar for alloys and pure aluminum. The temper of AA 6111 does not affect the electrolytic coloring process, although it influences the anodizing process. Under standard electrolytic coloring conditions, the current efficiency for tin deposition is low for all examined materials. However, pure aluminum has a much higher tin deposition efficiency than the alloys. A reduced amount of deposited metal with prolonged electrolytic coloring is observed for AA 6111, indicating deterioration of oxide structure during coloring process. For AA 5083, the increase of conductance of the oxide film results in an increase of the rms current and faradaic cathodic charge consumed during the electrolytic coloring process in comparison with the pure aluminum; this results in an increase of hydrogen evolution with no improvement in tin deposition efficiency. The anodizing voltage affects the electrolytic coloring process to a lesser degree for alloys than for pure aluminum, indicating the role of the morphology of the oxide film. The increases of anodizing temperature and porous layer thickness have marginal effect on electrolytic coloring process. Understanding the effect of alloy types on electrolytic coloring process will enable us to achieve color uniformity and to expand color and shade selections. (c) 2005 Elsevier B.V. All rights reserved.
机译:与纯铝比较,研究了在酸性硫酸锡溶液中以15 V-rms在酸性硫酸锡溶液中对未经热处理和热处理的AA 5083,AA 6111试样的AC电解着色过程。为此,使用了电化学技术,SEM / EDS和XRF。在电解着色之前,将样品在不同条件下的硫酸浴中进行阳极氧化。合金类型影响锡的沉积速率,但合金和纯铝的某些定性特征和电解着色机理的基本方面相似。 AA 6111的回火虽然会影响阳极氧化过程,但不会影响电解着色过程。在标准的电解着色条件下,所有检查的材料的锡沉积电流效率都较低。但是,纯铝比合金具有更高的锡沉积效率。对于AA 6111,观察到具有延长的电解着色的沉积金属量减少,这表明在着色过程中氧化物结构变差。对于AA 5083,与纯铝相比,氧化膜电导的增加导致在电解着色过程中均方根电流和法拉第阴极电荷的消耗增加;这导致氢的释放增加而锡沉积效率没有改善。与纯铝相比,阳极氧化电压对合金的电解着色过程影响较小,表明了氧化膜形态的作用。阳极氧化温度和多孔层厚度的增加对电解着色过程影响很小。了解合金类型对电解着色过程的影响将使我们能够实现颜色均匀性并扩展颜色和阴影的选择。 (c)2005 Elsevier B.V.保留所有权利。

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