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The improvement of anticorrosion properties of zinc-rich organic coating by incorporating surface-modified zinc particle

机译:通过掺入表面改性的锌颗粒改善富锌有机涂料的防腐性能

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摘要

The corrosion behaviors of zinc-rich coating with various zinc contents, ranging from 0 to 60 volume percent, in thin organic coatings (below 5 μm) were characterized by electrochemical impedance spectroscopy (EIS), free corrosion potential (E _(corr)) measurement and cycle corrosion test (CCT). It was verified that both coatings with 60 volume percent of zinc powder and without zinc powder showed good corrosion resistance mainly due to the cathodic protection and barrier effect, respectively. On the other hand, coatings with an intermediate concentration (10-40 vol.%) of zinc powder was not successful in protecting a steel substrate efficiently. To improve anticorrosion property of zinc-rich coating, the surface modification of zinc particle was carried out with derivatives of phosphoric and phosphonic acid in the aqueous solution. The effects of the surface modification of zinc particle on corrosion resistance of the coating were investigated with scanning vibrating electrode technique (SVET) and X-ray photoelectron spectroscopy (XPS). The best anti-corrosion performance was achieved when the incorporated zinc particle was treated with phosphoric acid 2-ethylhexyl ester and calcium ion simultaneously, which induced the formation of alkyl-phosphate-calcium complex layer of 190 nm in thickness on zinc particles. Corrosion resistance was improved by the decreased zinc activity and the increased compatibility between the formed complex layer on zinc surface and polymer binder matrix.
机译:通过电化学阻抗谱(EIS),自由腐蚀电位(E _(corr))表征了各种锌含量为0至60体积%的富锌涂层在薄有机涂层(5μm以下)中的腐蚀行为。测量和循环腐蚀测试(CCT)。已经证实,具有60体积%的锌粉和没有锌粉的两种涂层均显示出良好的耐腐蚀性,这主要是由于分别具有阴极保护和阻挡作用。另一方面,具有中等浓度(10-40体积%)的锌粉的涂层不能有效地保护钢基材。为了提高富锌涂层的防腐性能,在水溶液中用磷酸和膦酸的衍生物进行了锌颗粒的表面改性。用扫描振动电极技术(SVET)和X射线光电子能谱(XPS)研究了锌颗粒表面改性对涂层耐蚀性的影响。当将掺入的锌颗粒同时用磷酸2-乙基己酯和钙离子处理时,可获得最佳的防腐性能,这导致在锌颗粒上形成厚度为190 nm的烷基-磷酸-钙复合物层。锌活性的降低以及锌表面形成的复合层与聚合物粘合剂基体之间的相容性提高,提高了耐腐蚀性。

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