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Influence of Electrolytes on the Microstructure of Microarc Oxidation Coatings on Ti-6Al-4V Alloy

Wenbin XUE , Chao WANG , Zhiwei DENG , Ruyi CHEN , Tonghe ZHANG

材料科学技术(英文)

Dense ceramic oxide coatings of about 50 μm may be prepared on Ti-6Al-4V alloy surface by alternating-current microarc oxidation in aluminate and silicate solutions, respectively. Their phase constituent and microstructure were characterized using X-ray diffraction (XRD) and scanning electron microscopy (SEM). The results show that the electrolytic ions have incorporated into the interior of the coatings. The coating formed in aluminate solution is composed of the rutile TiO2 and TiAl2O5 phases rather than the rutile, anatase and amorphous SiO2 phases for the coating formed in silicate solution. However, TiAl¬2O5 content in the outer layer of the two coatings is much higher than in the inner layer. It is suggested that all these oxides may result from a rapid solidification of the molten coating in the microarc discharge zone.

关键词: Microarc oxidation , null , null

超级电容器电极材料与电解液的研究进展

焦琛 , 张卫珂 , 苏方远 , 杨宏艳 , 刘瑞祥 , 陈成猛

新型炭材料

超级电容器具有高功率密度、长循环寿命、良好的低温使用性能和安全性的优点,已经广泛应用到电子产品、能量回收和储能等领域.电极材料和电解液是决定超级电容器性能的两大关键因素,超级电容器常用的电极材料包括碳质材料(活性炭、碳纳米管、石墨烯、炭纤维、纳米洋葱碳等)、金属氧化物(金属氢氧化物)、导电聚合物及复合材料等;电解液主要有水系电解液、有机系电解液与离子液体.本文综述了超级电容器电极材料与电解液的研究现状,详细介绍了电极材料、电解液的性能及优缺点,并对新型电极材料和电解液的研究趋势提出展望.

关键词: 超级电容器 , 电极材料 , 电解液

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