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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Structural and corrosion behavior of Ni-Cu and Ni-Cu/ZrO2 composite coating electrodeposited from sulphate-citrate bath at low Cu concentration with additives
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Structural and corrosion behavior of Ni-Cu and Ni-Cu/ZrO2 composite coating electrodeposited from sulphate-citrate bath at low Cu concentration with additives

机译:Ni-Cu和Ni-Cu / ZrO2复合涂层的结构和腐蚀行为用添加剂低Cu浓度从硫酸盐 - 柠檬酸盐电沉积

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摘要

Ni-Cu and Ni-Cu/ZrO2 composite coatings were electrodeposited by addition of Cu, Cu and ZrO2 in Ni deposit from a sulphate-citrate bath at low Cu concentration with additives. Effects of the added Cu atoms and zirconia (ZrO2 ) particles on surface morphology and structural properties of Ni matrix were examined with various methods. The effects of deposition parameters like current density, duty cycle and their combination on corrosion behavior of Ni-Cu/ZrO2 coating were examined. The hardness was evaluated by Vickers hardness tester. Results indicated that the presence of Cu and ZrO2 changes the texture of nickel and reduces its crystallite size. The corrosion resistance of Ni deposit has been enhanced by the formation of Ni-Cu or Ni-Cu/ZrO2 composite coating. The average roughness values (R-a) of the NiCu, Ni-Cu/ZrO2 coating is about 4-5 nm, 16-20 nm, respectively, indicating the rougher surface of Ni-Cu/ZrO2 in comparison with Ni-Cu alloy. Ni-Cu/ZrO2 composite coating presents higher hardness than Ni and Ni-Cu alloys. It was found that not only the current density, duty cycle, but also their combination affects the corrosion properties of the composites. Compared to others, Ni-Cu/ZrO2 coating electrodeposited at duty cycle of 30% has the highest impedance value. Also, the higher corrosion-resistant property of Ni-Cu/ZrO2 composites were obtained under the parameter combination of 3 A dm(-2), 80% and 8 A dm(-2), 40% in comparison with other parameter combination. (C) 2019 Elsevier B.V. All rights reserved.
机译:通过在低Cu浓度与添加剂的低Cu浓度下加入Ni,Cu和ZrO 2在Ni沉积中加入Ni-Cu和Ni-Cu / ZrO2复合涂层。用各种方法检查添加的Cu原子和氧化锆(ZrO2)颗粒对Ni基质表面形态和结构性质的影响。研究了沉积参数,如电流密度,占空比及其对Ni-Cu / ZrO2涂层腐蚀行为的影响。 Vickers硬度测试仪评估硬度。结果表明,Cu和ZrO2的存在改变了镍的质地并降低了其微晶尺寸。通过形成Ni-Cu或Ni-Cu / ZrO 2复合涂层,Ni沉积物的耐腐蚀性已得到增强。 Nicu,Ni-Cu / ZrO2涂层的平均粗糙度值(R-A)分别为约4-5nm,16-20nm,表明与Ni-Cu合金相比,Ni-Cu / ZrO2的变形表面。 Ni-Cu / ZrO2复合涂层具有比Ni和Ni-Cu合金更高的硬度。发现不仅是电流密度,占空比,而且它们的组合不仅影响复合材料的腐蚀性。与其他相比,在30%的占空比下电沉积的Ni-Cu / ZrO2涂层具有最高的阻抗值。而且,与其他参数组合相比,在3A DM(-2),80%和8A DM(-2),40%的参数组合下获得Ni-Cu / ZrO2复合材料的较高耐腐蚀性。 (c)2019 Elsevier B.v.保留所有权利。

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