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Synthesis and Properties of Pulse Electrodeposited Lead-Free Tin-Based Sn/ZrSiO4 Nanocomposite Coatings

机译:脉冲电沉积无铅锡基Sn / ZrSiO4纳米复合涂层的合成及性能

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摘要

The Sn-based ZrSiO4 nanocomposite coatings have been synthesized by pulse co-electrodeposition technique from an aqueous electrolyte containing SnCl2 center dot 2H(2)O, C6H17N3O7, Triton X, and varying amounts of nano-sized ZrSiO4 particles (0, 5, 10, 15, 20, 25, 30, and 35 g/L). As-deposited films have been analyzed using X-ray diffraction, scanning electron microscope equipped with an energy dispersive X-ray spectrometer, and transmission electron microscope. The microhardness, wear as well as corrosion property of the coatings have been also evaluated. It is observed that the surface morphology of Sn-ZrSiO4 nanocomposite coatings is strongly dependent on the reinforcement concentration in the electrolyte, and the Sn-ZrSiO4 nanocomposite solder deposited from the electrolyte containing 25 g/L ZrSiO4 yields the highest hardness and the best wear and corrosion property among all the synthesized samples. The whisker growth propensity of the developed Sn-ZrSiO4 nanocomposites has also been examined after 90 days of aging at room temperature and reported here. (C) The Minerals, Metals & Materials Society and ASM International 2016
机译:Sn基ZrSiO4纳米复合涂层是通过脉冲共电沉积技术从含SnCl2中心点2H(2)O,C6H17N3O7,Triton X和不同数量的纳米级ZrSiO4颗粒(0、5、10, ,15、20、25、30和35 g / L)。已经使用X射线衍射,配备有能量色散X射线光谱仪的扫描电子显微镜和透射电子显微镜对沉积的膜进行了分析。还评估了涂层的显微硬度,磨损和腐蚀性能。可以看出,Sn-ZrSiO4纳米复合涂层的表面形态强烈依赖于电解质中的增强剂浓度,从含25 g / L ZrSiO4的电解质中沉积的Sn-ZrSiO4纳米复合焊料可获得最高的硬度和最佳的耐磨性。所有合成样品之间的腐蚀性能。在室温下老化90天后,还检查了已开发的Sn-ZrSiO4纳米复合材料的晶须生长倾向,并在此处进行了报道。 (C)矿产,金属与材料学会和ASM International 2016

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