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首页> 外文期刊>Transactions of the Institute of Metal Finishing: The International Journal for Surface Engineering and Coatings >Temperature, current density and cobalt concentration effects on electrodeposited anticorrosive cobalt-tungsten alloys using factorial experiment design and ANOVA techniques
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Temperature, current density and cobalt concentration effects on electrodeposited anticorrosive cobalt-tungsten alloys using factorial experiment design and ANOVA techniques

机译:使用因子实验设计和ANOVA技术对电沉积防腐钴钨合金的温度,电流密度和钴浓度效应

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摘要

Corrosion processes can compromise the durability of metallic materials. One way to minimise the effects of corrosion is to coat them with corrosion-resistant alloys. In this study, Co?W alloys were produced by electrodeposition and their anticorrosive performance was evaluated at different levels of current density, Co bath concentration and bath temperature, using factorial experiment design and ANOVA techniques. This evaluation consisted of measuring corrosion current and using electrochemical impedance spectroscopy. Adherent and corrosion resistant alloys were obtained at the lowest temperature of experimental design (25?C) and current density (10?mA?cm(?2)) values. From the corrosion tests, X-ray Diffraction and Scanning Electron Microscopy analysis it was possible to conclude that the increase in the tungsten percentage in the composition of the alloy generated an increase in corrosion resistance. Although the alloys? chemical composition has influence on the corrosion resistance, their physical aspect, such as the presence of cracks, are more significant for the resistance to corrosion.
机译:腐蚀过程可以损害金属材料的耐久性。最小化腐蚀效果的一种方法是用耐腐蚀合金涂覆它们。在该研究中,CO-W合金通过电沉积产生,使用因子实验设计和ANOVA技术,在不同水平的电流密度,CO浴浓度和浴温下进行防腐性能。该评估包括测量腐蚀电流和使用电化学阻抗光谱。在实验设计(25℃)和电流密度的最低温度下获得粘附和耐腐蚀合金(10?mA?cm(α2))值。从腐蚀试验中,X射线衍射和扫描电子显微镜分析可以得出结论,合金组合物中钨百分比的增加产生了耐腐蚀性的增加。虽然合金?化学成分对耐腐蚀性有影响,它们的物理方面如裂缝的存在,对于耐腐蚀性更为显着。

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