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首页> 外文期刊>Journal Of The South African Institute Of Mining & Metallurgy >The use of surface analytical techniques to characterize steel surfaces for organic coatings
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The use of surface analytical techniques to characterize steel surfaces for organic coatings

机译:使用表面分析技术表征有机涂层的钢表面

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摘要

Steel is a highly versatile material due to its low cost and good mechanical properties, but typically needs some or other form of corrosion protection due to its tendency to corrode when exposed to atmospheric conditions. In the case of organic coatings, the corrosion protection and functionality of the final product is critically dependent on the adhesion of the coating to the surface of the steel. In this work the effect of contaminants and the nature of the surface layers present on industrial steel products are investigated by means of paint adhesion tests, Auger electron spectroscopy (AES), and X-ray Photoelectron spectroscopy (XPS). It was found that the presence of sodium species on the surface is very detrimental to paint adhesion under wet conditions, while satisfactory adhesion may be obtained even in the presence of silicon and carbon residues. It was also found that the nature of the Fe-O layer, formed under wet conditions is labile and different from that formed in dry air, and that subtle changes in process conditions, such as changing the oxygen content of the quench water, may change the adhesion of paint to the surface of the steel. Lewis acid-base interactions are discussed as a mechanism that may determine the bonding between the steel and polymer coating.
机译:钢由于其低成本和良好的机械性能而成为一种用途广泛的材料,但由于其暴露于大气条件下容易腐蚀,因此通常需要某种形式的腐蚀防护。对于有机涂层,最终产品的腐蚀防护和功能至关重要,取决于涂层与钢表面的粘附力。在这项工作中,通过油漆附着力测试,俄歇电子能谱(AES)和X射线光电子能谱(XPS)研究了污染物和工业钢产品表面层性质的影响。已经发现,在潮湿条件下,表面上存在的钠类物质对涂料的粘附性非常有害,而即使在存在硅和碳残留物的情况下,也可以获得令人满意的粘附性。还发现,在潮湿条件下形成的Fe-O层的性质不稳定,与在干燥空气中形成的Fe-O层的性质不同,并且过程条件的细微变化(例如改变淬火水的氧含量)可能会改变油漆对钢材表面的附着力。路易斯酸碱的相互作用被讨论为一种机制,可以决定钢与聚合物涂层之间的键合。

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