首页> 外文会议>Nanoelectronics Conference (INEC), 2010 >Effects of current density on coating kinetic and micro-structure of microarc oxidation coatings fabricated on pure aluminum
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Effects of current density on coating kinetic and micro-structure of microarc oxidation coatings fabricated on pure aluminum

机译:电流密度对纯铝表面微弧氧化膜涂层动力学和微观结构的影响

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Microarc oxidation (MAO) of industrial pure aluminum at different anodizing current densities in sodium metasilicate/potassium hydroxide electrolytes has been studied, with condition of equal electric charge in the MAO process. The cell voltage evolution and the coating growth rate are investigated. Meanwhile, the influence of current density on microstructure has also been demonstrated. It has been found that the properties, such as anode reaction, coating thickness, surface morphology of the anodizing coating prepared by micro-arc oxidation are closely correlative with anodizing current density. Mirodischarges are generated only when the current density up to some value. Higher current density allows the sparking voltage to be easily reached and are the most beneficial for coating production. Meanwhile, the size of micropore in coatings increases with current density.
机译:研究了在偏硅酸钠/氢氧化钾电解液中不同阳极氧化电流密度下工业纯铝的微弧氧化(MAO),且在MAO过程中电荷相等。研究了电池电压的演变和涂层的生长速率。同时,还证明了电流密度对微观结构的影响。已经发现,通过微弧氧化制备的阳极氧化涂层的性能,例如阳极反应,涂层厚度,表面形态与阳极氧化电流密度密切相关。只有当电流密度达到某个值时才会产生微电荷。较高的电流密度可以轻松达到火花电压,并且对于涂层生产最有利。同时,涂层中微孔的尺寸随电流密度的增加而增加。

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