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Structure and effects of electroless Ni-Sn-P transition layer during acid electroless plating on magnesium alloys 被引量:5
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作者 刘伟 许东铎 +3 位作者 段小月 赵国升 常立民 李欣 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第5期1506-1516,共11页
An electroless ternary Ni-Sn-P transition layer with high corrosion resistance was applied for acid electroless nickel plating on magnesium alloys. The surface morphologies and microstructure of the traditional alkali... An electroless ternary Ni-Sn-P transition layer with high corrosion resistance was applied for acid electroless nickel plating on magnesium alloys. The surface morphologies and microstructure of the traditional alkaline electroless Ni-P and novel Ni-Sn-P transition layers were compared by SEM and XRD, and the bonding strengths between the transition layers and AZ31 magnesium alloys were tested. The corrosion resistance of the samples was analyzed by porosity test, potentiodynamic polarization, electrochemical impedance spectroscopy(EIS) in acid electroless solution at p H 4.5 and immersion test in 10% HCl. The results indicate that the transition layer is essential for acid electroless plating Ni-P coatings on magnesium alloys. Under the same thin thickness(-6 μm), the electroless Ni-Sn-P transition layer possesses superior properties to the traditional Ni-P transition layer, including high amorphization, smooth and dense surface without pores, enhanced bonding strength and corrosion resistance. Most importantly, acid electroless Ni-P coatings can be successfully deposited on magnesium alloys by using Ni-Sn-P transition layer. 展开更多
关键词 magnesium alloy Ni-Sn-P transition layer corrosion resistance acid electroless plating
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自分散性棒状纳米碳酸钙的原位合成
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作者 赵丽娜 刘怡丽 +3 位作者 聂立君 郭晓宇 刘丹 崔铭珊 《化学世界》 CAS CSCD 2015年第6期347-349,365,共4页
通过碳化法原位合成了自分散性棒状纳米碳酸钙粒子,通过FE SEM和XRD对产品形貌和结构进行分析。结果表明,形成棒状碳酸钙粒子的最佳条件是:温度为80℃,搅拌速度为400r/min,CO2流量为4.5mL/min。通过对体系pH值进行监测,表明有机质的加... 通过碳化法原位合成了自分散性棒状纳米碳酸钙粒子,通过FE SEM和XRD对产品形貌和结构进行分析。结果表明,形成棒状碳酸钙粒子的最佳条件是:温度为80℃,搅拌速度为400r/min,CO2流量为4.5mL/min。通过对体系pH值进行监测,表明有机质的加入可缩短碳化反应时间。同时引入了自分散性能,对解决纳米粒子的团聚、分散性差等问题有一定的参考价值。 展开更多
关键词 碳酸钙 棒状 合成 碳化
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