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首页> 外文期刊>Current applied physics: the official journal of the Korean Physical Society >Electrodeposition of 70-30 Cu-Ni nanocomposite coatings for enhanced mechanical and corrosion properties
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Electrodeposition of 70-30 Cu-Ni nanocomposite coatings for enhanced mechanical and corrosion properties

机译:70-30 Cu-Ni纳米复合涂料的电沉积,用于增强机械和腐蚀性能

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A copper-nickel alloy (70:30 ratio) was electrochemically deposited and compared to a composite coating incorporating layered silicate platelets to obtain copper-nickel-montmorillonite (MMT). The composite coatings were electrochemically deposited from a citrate bath to investigate the effects of MMT on the corrosion and mechanical properties of the coatings. Incorporation of MMT into the Cu-Ni alloy films was not affected by the deposition parameters such as applied voltage and pH. Scanning electron microscopy and atomic absorption spectroscopy confirmed the successful incorporation of the MMT into the coatings. Longer term stability in the presence of corroding solutions was noted for the copper-nickel composite films. The Tafel calculations showed an increase in polarization resistance, Rp, from 190.7 k Omega.cm(2) for pure Cu-Ni to 314.3 k Omega.cm(2) for Cu-Ni-0.2% MMT after soaking the coatings in 3.5% NaCl at 25 degrees C for two weeks, which was consistent with the resistance increase measured by electrochemical impedance spectroscopy. Microhardness test results showed about a 25% increase in the hardness for the copper-nickel coatings incorporated with the layered silicate platelets versus the pure Cu-Ni coating. (C) 2015 Elsevier B.V. All rights reserved.
机译:将铜镍合金(70:30比率)电化学沉积并与包含层状硅酸盐血小板的复合涂层相比,得到铜 - 镍蒙脱石(MMT)。将复合涂层从柠檬酸浴中电化学沉积,研究MMT对涂层的腐蚀和力学性能的影响。将MMT掺入Cu-Ni合金膜不受沉积参数的影响,例如施加的电压和pH。扫描电子显微镜和原子吸收光谱证实了将MMT的成功掺入涂层中。铜镍复合膜注意到腐蚀溶液存在下的长期稳定性。 Tafel计算显示偏振抗性,RP,从190.7KωCM(2)到314.3KΩcm(2)至314.3kΩcm(2)在浸泡3.5%后的Cu-Ni-0.2%MMT在25℃下的NaCl两周,这与通过电化学阻抗光谱测量的电阻增加一致。微硬度试验结果表明,掺入层状硅酸盐血小板与纯Cu-Ni涂层的铜镍涂层的硬度增加约25%。 (c)2015 Elsevier B.v.保留所有权利。

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