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首页> 外文期刊>Applied Surface Science >The effects of anodic and cathodic processes on the characteristics of ceramic coatings formed on titanium alloy through the MAO coating technology
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The effects of anodic and cathodic processes on the characteristics of ceramic coatings formed on titanium alloy through the MAO coating technology

机译:阳极和阴极工艺对通过MAO涂层技术在钛合金上形成的陶瓷涂层性能的影响

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This paper reports on the investigation into the effects of the different anodic j(a) and cathodic j(c) current densities on the variations of the anodic and cathodic processes and the associated changes in the characteristics of the coatings synthesized on Ti-6Al-4V alloy substrate by microarc oxidation technique. The coated samples were subjected to coating thickness and cross-section fracture observation. Phase and elemental composition at different depth of the coatings were evaluated through X-ray diffraction and energy dispersive spectrum analyses. The experimental results indicate that the increase of j(a) leads to the increasing slope of anodic voltage U+ versus oxidation time plots, the larger coating thickness and the more coarse surface morphology of MAO coatings; while the aggrandizement of the cathodic process results in the lower growth rate and more uniform structure of coatings. The changes of the elements distribution from the interface towards the coating surface with variation of j(a) and j(c) are affected by the Ti anodic dissolution and the electromigration of electriferous particles, such as Al(OH)4(-), in electrolytes. (c) 2005 Elsevier B.V. All rights reserved.
机译:本文报道了研究不同的阳极j(a)和阴极j(c)电流密度对阳极和阴极过程的变化以及在Ti-6Al-上合成的涂层特性的相关变化的影响的研究。 4V合金基体采用微弧氧化技术。对涂覆的样品进行涂层厚度和横截面断裂观察。通过X射线衍射和能量色散谱分析评估了涂层不同深度的相和元素组成。实验结果表明,j(a)的增加导致阳极电压U +与氧化时间图的斜率增加,MAO涂层的涂层厚度越大,表面形态越粗糙。阴极工艺的强化会导致较低的生长速率和更均匀的涂层结构。元素的分布从界面到涂层表面随j(a)和j(c)的变化而受到Ti阳极溶解和带电粒子如Al(OH)4(-)的电迁移的影响,在电解质中。 (c)2005 Elsevier B.V.保留所有权利。

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