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Study of the performance of films containing rare earth salts as corrosion inhibitors of zinc-iron alloy electroplated steel

机译:含稀土盐作为锌铁合金电镀钢缓蚀剂的薄膜性能研究

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摘要

Zinc-iron alloy electroplated steel is a material commonly used in the construction industries and automotive. This zinc-based material needs, however, to be protected against corrosive environments through a surface treatment that generally has hexavalent chromium, wich is toxic to the environment and may cause cancer to human being. This paper shows a study with the films of rare earth (Ce or La) on the zinc-iron alloy electroplated steel. These films were evaluated using Polarization Curves, Electrochemical Impedance Spectroscopy (EIS), Scanning Electron Microscopy (SEM) and EDS. The X-ray photoelectron spectroscopy (XPS) was also used to prove the existence of oxide films on the surface of zinc-iron alloy electroplated steel. The EIS and Polarization results have shown that the systems under study were efficient against corrosion and its performance depended upon the type of salt. The sample ZnFe+Ce proved to have the best inhibitors against corrosion.The cathodic branch of the polarization curve presents a decrease in order of 10 times in the current density when the ZnFe alloy coating were treated with rare earth and gZgincrease in order of one time at the same circumstance.
机译:锌铁合金电镀钢是建筑行业和汽车行业常用的材料。然而,需要通过通常具有六价铬的表面处理来保护这种基于锌的材料免受腐蚀性环境的侵蚀,该表面处理对环境有毒并且可能导致人类癌症。本文显示了对锌铁合金电镀钢上稀土膜(Ce或La)的研究。使用极化曲线,电化学阻抗谱(EIS),扫描电子显微镜(SEM)和EDS对这些膜进行评估。 X射线光电子能谱(XPS)也用于证明锌铁合金电镀钢表面存在氧化膜。 EIS和极化的结果表明,所研究的系统对腐蚀有效,其性能取决于盐的类型。事实证明,样品ZnFe + Ce具有最佳的缓蚀性能。当ZnFe合金涂层用稀土和gZginase进行1倍的处理时,极化曲线的阴极分支电流密度降低10倍左右。在相同情况下。

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