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Nanofabricated Multilayer Coatings of Zn-Ni Alloy for Better Corrosion Protection

机译:Zn-Ni合金的纳米加工多层涂层,具有更好的防腐蚀性能

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摘要

As an effort to increase the corrosion resistance of conventional monolayer Zn-Ni alloy coating, the multilayer Zn-Ni alloy coating have been done electrolytically on mild steel (MS), using gelatin and glyc-erol as additives. Multilayered, or more correctly composition modulated multilayer alloy (CMMA) coatings have been developed using square current pulse. Successive layers of alloys, in nanometric scale having alternately changing composition were fabricated by making the cathode current to cycle between two values, called cyclic cathode current densities (CCCD's). The coatings having different configuration, in terms of composition and thicknesses of individual layers were developed and their corrosion performances were evaluated by electrochemical methods. The corrosion rate (CR)'s were found to decrease drastically with progressive increase in number of layers (up to 300 layers), and then increased. The coating configurations have been optimized for best protection against corrosion. The CMMA Zn-Ni coating having 300 layers was found to be about 37 times more corrosion resistant than corresponding monolayer alloy, developed from same bath for same time. High protection efficacy of the coatings were attributed to alternate layers of alloys having different surface structure and composition, supported by Scanning Electron Microscopy (SEM) and X-Ray Diffraction (XRD) study, respectively. Optimization procedure has been explained, and results are discussed.
机译:为了提高常规单层Zn-Ni合金涂层的耐腐蚀性,已经在明胶和甘油作为添加剂的基础上在低碳钢(MS)上电解完成了多层Zn-Ni合金涂层。已经使用平方电流脉冲开发了多层或更正确的成分调制多层合金(CMMA)涂层。通过使阴极电流在两个称为循环阴极电流密度(CCCD's)的值之间循环来制造具有交替变化的组成的纳米级连续合金层。就各层的组成和厚度而言,开发了具有不同构型的涂层,并通过电化学方法评估了它们的腐蚀性能。发现腐蚀速率(CR)随层数(最多300层)的逐渐增加而急剧降低,然后增加。涂层配置已经过优化,可提供最佳的防腐蚀保护。发现具有300层的CMMA Zn-Ni涂层的耐腐蚀性是从同一浴槽中同时显影的相应单层合金的约37倍。涂层的高保护功效归因于具有不同表面结构和组成的交替合金层,分别由扫描电子显微镜(SEM)和X射线衍射(XRD)研究支持。已经说明了优化过程,并讨论了结果。

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