草酸溶液阳极氧化制备耐腐蚀纳米氧化铜涂层

Mahmood H. M., Suryanto, M. Hazza, F. I. Haidera
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引用次数: 10

摘要

铜合金由于其优良的传热性能而广泛应用于传热应用的制造中。铜污染是锅炉给水系统中严重的工业问题之一。这种污染通常是由锅炉给水环境中的铜腐蚀反应引起的。减少铜污染的最好方法是提高铜的耐腐蚀性。采用阳极氧化技术对铜的耐腐蚀性能进行了研究。阳极氧化实验在浓度为0.1 ~ 0.5 M的草酸溶液中进行,温度范围为24 ~ 0 ο C,外加电位为7.5 ~ 9 V。采用场发射扫描显微镜、能量色散x射线能谱和x射线衍射对阳极氧化涂层进行了分析。表征结果为形成晶粒尺寸为25 ~ 68 nm的氧化铜阳极氧化涂层。在模拟锅炉给水中进行了阳极氧化铜样品的耐蚀性试验。结果表明,阳极处理后样品的耐蚀性得到了提高。在含3.5% NaCl和2 mg/l NH3的测试溶液中,阳极氧化涂层的防腐效率分别提高了86.2%和74.5%。
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Developing of Corrosion Resistance Nano Copper Oxide Coating on Copper using Anodization in Oxalate solution
Copper alloys are widely used in the manufacturing of heat transfer applications, this due to their excellent heat transfer properties. Copper contamination is one of the serious industrial problems in the boiler feed water system. This contamination commonly resulted from copper corrosion reactions in boiler feed water environment. The best way to reduce the copper contamination is by improving copper corrosion resistance. This research studies the developing of copper corrosion resistant by using anodization technique. The anodization experiments are conducted in oxalate solutions of concentrations from 0.1 to 0.5 M, at a temperature range from 24 to 0 ο C and applied potential from 7.5 to 9 V. Anodized coating analyzed using Field emission scanning microscope, energy dispersive X-ray spectroscopy, and X-ray diffraction. Characterization results referred to the formation of copper oxide anodized coating with grain size range from 25 to 68 nm. The corrosion resistance of the anodized copper samples carried out in simulated boiler feed water. Results show that the corrosion resistance of the anodized samples was enhanced. The corrosion protection efficiencies for the anodized coating increased 86.2% and 74.5% in testing solutions contains 3.5% NaCl, and 2 mg/l NH3, respectively.
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CiteScore
3.10
自引率
0.00%
发文量
29
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