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Effect of Low Alloy Steel Powder- Ethyl Silicate Based Coatings on Corrosion Behaviour of Weathering Steel Exposed to Salt Environment

机译:低合金钢粉-硅酸乙酯基涂层对盐环境下耐候钢腐蚀行为的影响

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Weathering steel is used almost exclusively by Ministry of Transportation Ontario (MTO) for construction of steel bridges since 1968. This steel, under normal weathering cycles, oxidises to form a tough layer of rust or 'patina', which protects the steel from unabated corrosion. Although many of these bridges are exhibiting stable patina in most of the locations, in recent years some bridges were found to exhibit accelerated corrosion over the driving lanes (from road salt exposure) and the corrosion products were de-bonding from the parent steel material. Analysis of the corrosion products indicated that the de-bonded patina regions exhibited greater amounts of akaganeite (P-FeOOH), while greater amounts of goethite (α-FeOOH) were observed in the regions away from road salt exposure. Hence the objective of the present study is to form and stabilize the goethite phase on weathering steel surface even under salt exposure conditions. To meet this objective, weathering steel panels have been spray painted with low alloy steel powders containing varying concentrations of copper, nickel, chromium and molybdenum using an ethyl silicate-based paint system. These elements are thought to be primarily responsible for the formation and stabilization of goethite phase. ASTM G85-A5 (Prohesion) test has been used to evaluate the corrosion behaviour of these painted panels. Corrosion product chemistry from salt spray exposures has been determined using scanning electron microscopy coupled with energy dispersive X-ray analysis, laser Raman spectroscopy and Mossbauer spectroscopy measurements. In this paper, the results from these measurements are presented and the effect of various low alloy steel powder paint formulations on the corrosion product composition is discussed.
机译:自1968年以来,耐候钢几乎一直被安大略省交通运输部(MTO)专用于钢桥的建造。在正常的耐候周期下,这种钢会氧化形成坚硬的锈层或“铜锈”,从而保护钢不受腐蚀。 。尽管这些桥梁中的许多桥梁在大多数位置都表现出稳定的古铜色,但近年来发现一些桥梁在行车道上表现出加速的腐蚀(由于暴露于道路盐中),并且腐蚀产物与母材脱粘。对腐蚀产物的分析表明,去粘结的铜绿区域显示出更多的赤霞石(P-FeOOH),而在远离道路盐分的区域中观察到了更多的针铁矿(α-FeO​​OH)。因此,本研究的目的是即使在盐分暴露条件下,也能在耐候钢表面上形成并稳定针铁矿相。为了达到这个目的,已经使用基于硅酸乙酯的涂料系统对耐候性钢板喷涂了低合金钢粉,其中含有不同浓度的铜,镍,铬和钼。这些元素被认为是针铁矿相形成和稳定的主要原因。 ASTM G85-A5(粘合性)测试已用于评估这些涂漆板的腐蚀行为。已经使用扫描电子显微镜,能量色散X射线分析,激光拉曼光谱和Mossbauer光谱测量来确定盐雾暴露的腐蚀产物化学。本文介绍了这些测量的结果,并讨论了各种低合金钢粉末涂料配方对腐蚀产物组成的影响。

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