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Obtaining and Corrosion Performance of Composite Zinc Coatings with Incorporated Carbon Spheres

机译:用掺入碳球的复合锌涂层获得和腐蚀性能

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The present work describes one possible way to prepare a stable aqueous suspension of carbon sphere particles with a positive charge that is suitable for simultaneous electrodeposition with zinc on steel substrate. In order to stabilize the suspension against aggregation, tri-block amphiphilic copolymer Pluronic F127, which is commercially available, was adsorbed on the surface of carbon sphere particles. This polymer contained poly (ethylene oxide) blocks as hydrophilic segments and poly (propylene oxide) blocks as the hydrophobic part. Scanning electron microscopy and visual observations confirmed the stability of the obtained suspension. The carbon sphere particles were embedded into the zinc coating by the co-electrodeposition process. The surface morphology of the composite coating was investigated using scanning electron microscopy. The influence of the carbon spheres on the cathodic and anodic processes was evaluated with cyclic voltammetry studies. The electrochemical investigations were realized in a model corrosion medium (5% NaCl solution with pH 6.7) by application of selected methods such as polarization resistance, potentiodynamic polarization, and electrochemical impedance spectroscopy, which revealed higher protective ability of the composite coating against corrosion in an aggressive environment.
机译:本作者描述了一种制备碳球颗粒的稳定水性悬浮液的一种可能的方法,其适用于钢基材上的锌的同时电沉积。为了使悬浮液稳定抗聚集,可商购的三嵌段两亲共聚物Pluronic F127被吸附在碳球形颗粒的表面上。该聚合物含有聚(环氧乙烷)嵌段作为亲水区段和聚(环氧丙烷)嵌段作为疏水部分。扫描电子显微镜和视觉观察证实了所得悬浮液的稳定性。通过共电沉积工艺将碳球颗粒嵌入锌涂中。使用扫描电子显微镜研究复合涂层的表面形态。通过循环伏安法研究评价碳球对阴极和阳极过程的影响。通过施加诸如偏振电阻,电位偏振和电化学阻抗光谱,在模型腐蚀介质(用pH6.7)中的模型腐蚀介质(5%NaCl溶液)中实现了电化学研究,这揭示了复合涂层对腐蚀的更高保护能力侵略性环境。

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