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首页> 外文期刊>Journal of Applied Electrochemistry >Corrosion behavior of composition modulated multilayer Zn-Co electrodeposits produced using a single-bath technique
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Corrosion behavior of composition modulated multilayer Zn-Co electrodeposits produced using a single-bath technique

机译:使用单浴技术制备的成分调制的多层Zn-Co电沉积物的腐蚀行为

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Composition modulated alloy (CMA) electrodeposits of Zn-Co were produced from acid chloride baths by the single-bath technique. Their corrosion behavior was evaluated as a function of the switched cathode current densities and the number of layers. The process was optimized with respect to the highest corrosion resistance. Enhanced corrosion resistance was obtained when the outer layer was slightly richer with cobalt. At the optimum switched current densities 40/55 mA cm~(-2), a coating with 600 layers showed__ 6 times higher corrosion resistance than monolithic Zn-Co electrodeposit having the same thickness. The CMA coating exhibited red rust only after 1,130 h in a salt-spray test. The increased corrosion resistance of the multilayer alloys was related to their inherent barrier properties, as revealed by Electrochemical Imped_ance Spectroscopy. The corrosion resistance was explained in terms of n-type semiconductor films at the interface as supported by Mott-Schottky plots.
机译:Zn-Co的成分调制合金(CMA)电沉积是通过单浴技术从酰氯浴中制备的。根据开关阴极电流密度和层数评估其腐蚀行为。在最高的耐腐蚀性方面对该工艺进行了优化。当外层的钴含量稍高时,可获得增强的耐腐蚀性。在最佳开关电流密度为40/55 mA cm〜(-2)时,具有600层涂层的耐蚀性是具有相同厚度的整体式Zn-Co电沉积的6倍。仅在盐雾试验中1,130小时后,CMA涂层才会出现红锈。如电化学阻抗谱所揭示的,多层合金增加的耐腐蚀性与其固有的阻挡性能有关。耐蚀性由Mott-Schottky图支持的界面处的n型半导体膜来解释。

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