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Formation of multi-functional TiO_2 surfaces on AA2024 alloy using plasma electrolytic oxidation

机译:使用等离子体电解氧化在AA2024合金上形成多功能TiO_2表面

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Plasma electrolytic oxidation (PEO) was applied to functionalise the surface of AA2024 alloy. A potassium titanium-oxide oxalate dihydrate based aqueous electrolyte was used, which allowed the direct formation of a TiO2 surface layer on the aluminium alloy substrate. The effect of PEO treatment time and the additional presence of anatase particles in the electrolyte solution on the surface layer and its properties (corrosion, wear and photocatalytic activity) were investigated.It was found that the coating thickness and surface morphology are strongly dependent on the PEO processing time. However, the phase composition is not much affected by the treatment time and the main coating phase is rutile with a smaller amount of anatase. Adding additional anatase in the form of particles increases the amount of anatase in the coatings. The additional particle addition has only minor effect on the corrosion resistance, but reduces the wear resistance remarkably. Interestingly, the addition of anatase particles and the PEO treatment time are not effective in increasing the photocatalytic activities of the samples.
机译:施加等离子体电解氧化(PEO)对AA2024合金的表面进行官能化。使用氧化钛氧化钛基二水合物的水性电解质,其允许在铝合金基材上直接形成TiO 2表面层。研究了PEO处理时间的影响和锐钛矿颗粒在表面层上的电解质溶液中的额外存在及其性质(腐蚀,磨损和光催化活性)。发现涂层厚度和表面形态强烈依赖于PEO处理时间。然而,相对于治疗时间的影响不大,并且主要涂层相是金红石,锐钛矿量较少。以颗粒形式加入另外的锐钛矿增加涂层中的锐钛矿的量。附加颗粒添加仅对耐腐蚀性略有影响,但显着降低耐磨性。有趣的是,加入锐钛矿颗粒和PEO处理时间在增加样品的光催化活性方面无效。

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