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首页> 外文期刊>Applied Surface Science >Electro-spark deposition in vacuum using graphite electrode at different electrode polarities: Peculiarities of microstructure, electrochemical and tribological properties
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Electro-spark deposition in vacuum using graphite electrode at different electrode polarities: Peculiarities of microstructure, electrochemical and tribological properties

机译:使用不同电极极性的石墨电极真空电火花沉积:微观结构,电化学和摩擦学特性的特性

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Titanium and its alloys are widely used in offshore and costal infrastructure, but need protection against wear and corrosion in saline environments. Compared to other surface engineering methods, electro-spark deposition (ESD) does not have the drawbacks of small thickness and poor adhesion of protective coatings. However, ESD in air or inert atmosphere using a graphite electrode does not provide sufficient continuity of a protective layer due to a low efficiency of carbon transfer. To enhance carbon transfer, Ti was subjected to ESD in vacuum using a graphite electrode. The main difference between vacuum and air deposition is that, in addition to spark discharges, arc evaporation occurs. It was shown that the carbon content, microstructure, and phase composition of modified Ti layer can be well controlled by changing electrode polarity and pulse energy. At cathodic polarity, arc discharge occurs on graphite electrode, which leads to increased carbon evaporation and a higher carbon content in the coating. Resulting coatings protect Ti from wear and corrosion in 3.5 wt.% NaCl solution due to formation of TiC layer. Coatings with top graphite layer show the lowest values of friction coefficient and corrosion current density, as well as fast corrosion potential recovery during tribocorrosion tests.
机译:钛及其合金广泛用于海上和昂贵的基础设施,但需要防止盐水环境中的磨损和腐蚀。与其他表面工程方法相比,电火花沉积(ESD)没有小厚度和保护涂层粘附性差的缺点。然而,由于碳转移的低效率,使用石墨电极的空气或惰性气氛中的ESD不提供保护层的足够连续性。为了增强碳转移,使用石墨电极对Ti真空进行ESD。真空和空气沉积之间的主要区别在于,除了火花排出之外,发生电弧蒸发。结果表明,通过改变电极极性和脉冲能量,可以很好地控制改性Ti层的碳含量,微观结构和相组合物。在阴极极性下,在石墨电极上发生电弧放电,这导致涂层中的碳蒸发和更高的碳含量增加。所得涂层在3.5重量%的3.5重量%中保护Ti免受磨损和腐蚀。由于形成Tic层,%NaCl溶液。具有顶部石墨层的涂层显示摩擦系数和腐蚀电流密度的最低值,以及在Tribocorion测试期间的快速腐蚀潜在恢复。

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