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Coloration of the aluminum alloy surface with dye emulsions while growing a plasma electrolytic oxide layer

机译:在生长等离子电解氧化物层的同时用染料乳液对铝合金表面进行着色

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Coloring a dense oxide layer is accomplished during plasma electrolytic oxidation (PEO) with an electrolyte mixed with dye emulsions. We demonstrate this coating technique using the aluminum disks of 6061 alloy and five synthetic dyes of red, yellow, orange, blue, and black color. The prepared dye emulsions are kinetically stable, containing negatively charged oil droplets of similar to 50 nm in size. To avoid color speckles, a barrier oxide layer must be first grown under the normal PEO conditions with an electrolyte without dye, followed by the growth of colored gamma-alumina film with a stepwise increasing voltage of positive polarization in the electrolyte containing dye emulsion. Although the presence of surfactant in emulsion causes a large amount of bubbles that obscures the light of electric sparks, the spark sound can be heard clearly on site. These electric discharges can produce an uneven surface with many volcano craters of micrometer size which is the icon of PEO. Fortunately this typical unevenness can be smoothed out by synthetic dyes with proper voltage adjustment, resulting in a glossy surface. (C) 2016 Elsevier B.V. All rights reserved.
机译:在等离子电解氧化(PEO)期间,用与染料乳液混合的电解质对致密的氧化物层进行着色。我们演示了使用6061合金铝盘和五种红色,黄色,橙色,蓝色和黑色的合成染料进行的涂层技术。所制备的染料乳液是动力学稳定的,包含大小接近50 nm的带负电荷的油滴。为了避免出现色斑,必须先在正常的PEO条件下用不含染料的电解质来生长阻挡氧化层,然后在含有染料的电解质乳剂中以逐步增加的正极化电压生长有色的γ-氧化铝膜。尽管乳液中表面活性剂的存在会引起大量气泡,使电火花的光线变得模糊,但现场仍能清晰听到火花的声音。这些放电会产生不平坦的表面,并形成许多微米级的火山口,这是PEO的标志。幸运的是,这种典型的不均匀性可以通过适当调整电压的合成染料消除,从而获得光滑的表面。 (C)2016 Elsevier B.V.保留所有权利。

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