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Study of surface roughness and corrosion performance of Ni/Zn-Fe and Zn-Fe/Ni compositionally modulated multilayer coatings

机译:Ni / Zn-Fe和Zn-Fe / Ni复合调制多层涂层的表面粗糙度和腐蚀性能研究

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摘要

Compositionally modulated multi layer coatings consisting alternative layers of nickel and zinc-iron alloy were electroplated using dual bath technique. The coating's surface morphology was studied using a scanning electron microscope. The effects of coatings configuration, i.e., order and the number of layers on the coatings surface roughness was investigated. It was observed that as the number of layers increases in the different Ni/Zn-Fe CMM coatings, 2 and 4-layer Zn-Fe/Ni CMM coatings the final surface roughness is decreased due to the lower grain growth of zinc-iron individual layers. The coatings corrosion protection performance was evaluated using Tafel extrapolation, anodic polarization and salt spray tests. The results of corrosion study showed that all Ni/Zn-Fe and Zn-Fe/Ni CMM coatings, except the 8-layer Zn-Fe/Ni coating, had a better corrosion protection performance compared to the single layer zinc-iron alloy coating or nickel coating.
机译:使用双浴技术电镀由镍和锌铁合金的替代层组成的成分调制多层涂层。使用扫描电子显微镜研究了涂层的表面形态。研究了涂层结构,即顺序和层数对涂层表面粗糙度的影响。可以看出,随着在不同的Ni / Zn-Fe CMM涂层,2层和4层Zn-Fe / Ni CMM涂层中层数的增加,最终表面粗糙度由于锌铁个体的较低晶粒生长而降低层。使用塔菲尔外推法,阳极极化和盐雾试验评估了涂层的防腐性能。腐蚀研究结果表明,除8层Zn-Fe / Ni涂层外,所有Ni / Zn-Fe和Zn-Fe / Ni CMM涂层均比单层锌铁合金涂层具有更好的防腐性能或镀镍。

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