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Corrosion Products Formed on Mild Steel Samples Submerged in Various Aqueous Solutions

机译:浸在各种水溶液中的低碳钢样品上形成的腐蚀产物

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摘要

Corroded samples, from the steel shell of an industrial evaporator system were investigated. A protective magnetite layer had formed, which subsequently dissolved in localised areas, resulting in failure of the shell. To clarify the mechanisms involved, mild steel samples of similar composition to the steel shell were submerged in the condensate and experiments were performed at room temperature and at 90℃ under both static and dynamic conditions for exposure times up to 30 days. Control samples were submerged in deionised water under similar conditions. The dynamic corrosion rates in the industrial condensate were a factor of 2 higher than the rates for the deionised water, whilst static corrosion rates, measured in both media, were lower by a factor of 3 to 4 found for the dynamic experiments. The corrosion products were identified by means of CEMS analyses. The main components were magnetite and oxyhydroxides of iron. Additional to the species mentioned, γ-Fe_2O_3, goethite and hematite formed.
机译:研究了来自工业蒸发器系统钢壳的腐蚀样品。形成了保护性磁铁矿层,该磁铁矿层随后溶解在局部区域中,导致壳体失效。为了阐明所涉及的机理,将成分与钢壳相似的低碳钢样品浸入冷凝液中,并在室温和90℃下在静态和动态条件下进行长达30天的暴露时间实验。将对照样品在相似条件下浸入去离子水中。工业冷凝物中的动态腐蚀速率比去离子水的动态腐蚀速率高2倍,而在两种介质中测得的静态腐蚀速率则比动态实验发现的低3到4倍。通过CEMS分析鉴定腐蚀产物。主要成分是磁铁矿和铁的羟基氧化物。除上述物种外,还形成了γ-Fe_2O_3,针铁矿和赤铁矿。

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