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Electrochemical Corrosion of Cermet Coatings in Artificial Marine Water

机译:金属陶瓷涂层在人工海水中的电化学腐蚀

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The electrochemical corrosion of different WC+12Co coatings sprayed on 34CrMo4 (UNS-G41350) steel by the High Velocity Oxygen Fuel technique has been studied by corrosion potential and impedance measurements considering previous SEM observations and EDX microanalysis. The experiments were conducted in artificial marine water at 20 °C and the impedance spectra were obtained at the corresponding corrosion potentials for the substrate, coating and substrate-coating systems. The impedance diagrams indicated that the electrochemical corrosion of the steel-coating systems is controlled by oxygen diffusion through a porous film of corrosion products, as in the case of the shot-blasted steel. In contrast, the corrosion of the coating appeared to be controlled by diffusion of oxygen through the electrolyte. The impedance diagrams obtained for the steel-coating systems depended on the porosites of the cermet coatings, thus being an useful procedure to characterize metals coated by cermets.
机译:考虑到以前的SEM观察和EDX微观分析,通过腐蚀电位和阻抗测量研究了通过高速氧气燃料技术喷涂在34CrMo4(UNS-G41350)钢上的不同WC + 12Co涂层的电化学腐蚀。实验是在20°C的人造海水中进行的,并在相应的腐蚀电位下获得了底物,涂层和底物涂层系统的阻抗谱。阻抗图表明,与喷丸钢一样,镀层系统的电化学腐蚀是通过氧气通过腐蚀产物的多孔膜扩散来控制的。相反,涂层的腐蚀似乎是通过氧气通过电解质的扩散来控制的。从钢涂层系统获得的阻抗图取决于金属陶瓷涂层的孔隙度,因此是表征金属陶瓷涂层金属的有用方法。

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