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Synergistic corrosion protection for galvanized steel by phosphating and sodium silicate post-sealing

机译:磷化和硅酸钠后密封对镀锌钢的协同腐蚀保护

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To improve the corrosion resistance of phosphate coatings, the phosphated hot-dip galvanized (HDG) sheets were post-sealed with sodium silicate (water glass) solutions. The morphology and chemical composition of the composite coatings was analyzed using scanning electron microscopy (SEM) and energy dispersive spectroscopy (EDS). The effect of sodium silicate post-sealing treatment on the corrosion behaviors of phosphate coatings was investigated by neutral spray salt (NSS) tests and electrochemical measurements. The results show that after the silicate post-treatment the pores among zinc phosphate crystals are sealed with the films containing Si, P, O and Zn, leading to the formation of the continuous composite coatings on the surface of HDG steel. The corrosion resistance of the composite coatings depending on concentration of sodium silicate and post-sealing time is greatly improved by the silicate post-treatment. The optimum concentration of silicate and post-sealing time are 5 g/L and 10 min, respectively. Both the anodic and cathodic processes of zinc corrosion on the samples are suppressed conspicuously, and the synergistic protection effect of the single phosphate coatings and the single silicate films is evident. Moreover, the low frequency inductive loop in electrochemical impedance spectroscopy (EIS) is disappeared and the electrochemical impedance values are increased for more than one order of magnitude. The corrosion protection of the composite coatings is comparable to that provided by the chromic acid post-treatment. (C) 2007 Elsevier B.V. All tights reserved.
机译:为了提高磷酸盐涂层的耐腐蚀性,将磷酸盐化的热浸镀锌(HDG)板材与硅酸钠(水玻璃)溶液进行后密封。使用扫描电子显微镜(SEM)和能量色散光谱(EDS)分析了复合涂层的形貌和化学成分。通过中性喷雾盐(NSS)测试和电化学测量研究了硅酸钠密封后处理对磷酸盐涂层腐蚀行为的影响。结果表明,对硅酸盐进行后处理后,磷酸锌晶体之间的孔被含有Si,P,O和Zn的膜密封,从而在HDG钢表面形成了连续的复合涂层。通过硅酸盐的后处理,取决于硅酸钠的浓度和后密封时间的复合涂层的耐腐蚀性得以大大提高。最佳硅酸盐浓度和密封后时间分别为5 g / L和10分钟。锌腐蚀在样品上的阳极和阴极过程都得到了显着抑制,并且单磷酸盐涂层和单硅酸盐薄膜的协同保护作用是明显的。此外,电化学阻抗谱(EIS)中的低频感应环路消失了,电化学阻抗值增加了一个以上的数量级。复合涂层的防腐性能可与铬酸后处理相媲美。 (C)2007 Elsevier B.V.版权所有。

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