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首页> 外文期刊>Materials Science and Engineering >Comparative study of formation and corrosion performance of porous alumina and ceramic nanorods formed in different electrolytes by anodization
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Comparative study of formation and corrosion performance of porous alumina and ceramic nanorods formed in different electrolytes by anodization

机译:阳极氧化法在不同电解质中形成多孔氧化铝和陶瓷纳米棒的形成和腐蚀性能的比较研究

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摘要

Fabrication of Al_2O_3-TiO_2 nanoceramic coatings on aluminium was carried out in a single step using cost effective sulphuric acid electrolyte with the addition of potassium titanium oxalate (PTO) by anodization method. For comparison, the anodization was also carried out in sulphuric acid electrolyte alone. The effect of composition of the electrolyte, current density and electrolyte concentration on formation and surface characteristics of anodic alumina and ceramic coatings produced from different electrolytes have been investigated. The growth process, surface morphology, nanostructure, distribution of chemical elements, phase constitutions and corrosion resistance of the coatings formed in two different electrolytes were investigated by scanning electron microscopy (SEM), energy dispersive X-ray spectroscopy (EDX), X-ray diffraction (XRD), Tafel polarization technique and electrochemical impedance spectroscopy (E1S). As the concentration of electrolyte and current density increased, the surface properties of the coating increased up to certain content and beyond that they decreased. Dense, uniform nanoceramic coatings with less surface defects were obtained from sulphuric acid + PTO electrolyte. The corrosion studies reveal that ceramic coating formed in sulphuric acid + PTO electrolyte offers better corrosion resistance compared to the alumina coating formed in sulphuric acid electrolyte.
机译:使用具有成本效益的硫酸电解质并通过阳极氧化法添加草酸钾钛(PTO),一步一步地在铝上制备Al_2O_3-TiO_2纳米陶瓷涂层。为了比较,也仅在硫酸电解质中进行阳极氧化。研究了电解质的组成,电流密度和电解质浓度对阳极氧化铝的形成和表面特性以及由不同电解质生产的陶瓷涂层的影响。通过扫描电子显微镜(SEM),能量色散X射线能谱(EDX),X射线研究了在两种不同电解质中形成的涂层的生长过程,表面形态,纳米结构,化学元素分布,相组成和耐蚀性。衍射(XRD),塔菲尔偏振技术和电化学阻抗谱(E1S)。随着电解质浓度和电流密度的增加,涂层的表面性能增加到一定含量,超过此含量则下降。从硫酸+ PTO电解质中获得了具有较少表面缺陷的致密,均匀的纳米陶瓷涂层。腐蚀研究表明,与在硫酸电解质中形成的氧化铝涂层相比,在硫酸+ PTO电解质中形成的陶瓷涂层具有更好的耐腐蚀性。

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