首页> 外文期刊>International Journal of Electrochemical Science >The Effect of Stirring Rate on Electrodeposition of Nanocrystalline Nickel Coatings and their Corrosion Behaviors and Mechanical Characteristics
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The Effect of Stirring Rate on Electrodeposition of Nanocrystalline Nickel Coatings and their Corrosion Behaviors and Mechanical Characteristics

机译:搅拌速度对纳米晶镍涂层电沉积的影响及其腐蚀行为和力学性能

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Nanocrystalline pure nickel coating was electroplated on pure copper by means of a modified Watts bath with variant stirring rates and current densities. The crystallite sizes were calculated by XRD analysis. The crystallite size had an inverse relation with stirring rate and current density in the plating bath. The best corrosion resistance was observed in 5 A/dm2 current density of polarization test and corrosion rate smoothly increased by agitation in the plating bath. The microstructure evolution at high stirring rates exhibited some surface bubbles that affected the surface quality and properties. Although Vickers microhardness increased by the addition of the current density, our measurements showed that the hardness had an inverse relationship with turbulence in the solution. An optimum agitation in the bath could improve the hardness distribution on the coated specimen. However, specimens with agitation did not follow the Hall–Petch relationship between crystallite size and microhardness.
机译:借助于改进的瓦特浴(Watts bath),将纳米晶的纯镍涂层电镀在纯铜上,并采用不同的搅拌速度和电流密度。通过XRD分析计算微晶尺寸。微晶尺寸与镀浴中的搅拌速率和电流密度成反比。在极化测试的5 A / dm2电流密度下观察到最佳的耐蚀性,并且通过在电镀液中进行搅拌可以使腐蚀速率平稳提高。在高搅拌速率下的微观结构演变表现出一些影响表面质量和性能的表面气泡。尽管通过增加电流密度可以提高维氏显微硬度,但我们的测量结果表明,硬度与溶液中的湍流呈反比关系。在镀液中进行最佳搅拌可以改善涂层样品的硬度分布。但是,搅动后的样品并未遵循微晶尺寸与显微硬度之间的Hall-Petch关系。

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