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首页> 外文期刊>Transactions of the Indian Institute of Metals >Development of Black Corrosion-Resistant Ceramic Oxide Coatings on AA7075 by Plasma Electrolytic Oxidation
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Development of Black Corrosion-Resistant Ceramic Oxide Coatings on AA7075 by Plasma Electrolytic Oxidation

机译:血浆电解氧化AA7075对黑腐蚀陶瓷氧化物涂层的研制

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摘要

Research to achieve dark shade on aluminum surface is a challenge but worthwhile. In this research work, plasma electrolytic oxidation treatment was carried out on the surface of the AA7075 substrate in different combinations of K2TiF6, (NH4)(6)Mo7O24 and Na2WO4 containing electrolytes so as to fabricate high-absorption black corrosion-resistant ceramic oxide coatings for spacecraft applications. The effect of three different kinds of electrolytes on thickness, morphology, chemical composition, phase composition, thermal control property and corrosion resistance was investigated. The results showed that sample KTW, PEO treated with K2TiF6 and Na2WO4, showed the higher thickness of 29.7m. Scanning electron microscopy surface morphology study revealed that micropores were less for coating KTW than the other PEO-treated samples. Energy-dispersive spectroscopy elemental composition analysis indicated that molybdenum, titanium and tungsten species were incorporated into the coating structure. Dark black colored KTM sample, PEO treated with K2TiF6 and (NH4)(6)Mo7O24, showed lower absorption value in absorption spectra obtained by UV-Vis spectrophotometer. Potentiodynamic polarization study confirmed that higher thickness, less porous and W element containing PEO-treated sample KTW showed excellent corrosion resistance than the sample treated with K2TiF6 (KT) and the sample treated with K2TiF6 and (NH4)(6)Mo7O24 (KTM).
机译:在铝表面上实现黑暗阴影的研究是一个挑战,但值得。在该研究中,在AA7075底物的表面上以K2TIF6,(NH 4)(6)MO7O24和Na 2 OW4的不同组合的不同组合进行等离子体电解氧化处理,以制造高吸收黑色耐腐蚀陶瓷氧化物涂料用于航天器应用。研究了三种不同电解质对厚度,形态,化学成分,相组成,热控制性能和耐腐蚀性的影响。结果表明,用K2TIF6和Na2WO4处理的样品KTW,PEO,厚度较高29.7m。扫描电子显微镜表面形态学研究表明,对于涂覆KTW而言,微孔少于其他PEO处理的样品。能量分散光谱分子组成分析表明,钼,钛和钨物种掺入涂料结构中。用K2TIF6和(NH4)(6)Mo7O24处理的深黑色KTM样品,PEO,显示通过UV-Vis分光光度计获得的吸收光谱的较低吸收值。电位动力学偏振研究证实,厚度较高,含有PEO处理的样品KTW的厚度较少,含有优异的耐腐蚀性,而不是用K2TIF6(KT)和用K2TIF6和(NH 4)(6)MO7O24(KTM)处理的样品的样品。

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