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Initiation of Metal-Dusting Pits and a Method to Mitigate Metal-Dusting Corrosion

机译:金属粉尘坑的起爆和减轻金属粉尘腐蚀的方法

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Initiation of metal dusting was studied by scanning-electron microscopy and Raman spectroscopy. A copper-indicator method was developed to identify locations that are easily attacked by metal dusting. The effect of surface scratches on metal dusting was investigated. Alloy 800 specimens from a hydrogen-reformer plant were analyzed. The alloy developed a nonprotective oxide scale in which the major phase was $Fe_{1+x}Cr_{2-x}O_{4}$ spinel with a high Fe content. The initiation of metal-dusting pits occurs when channels form through the oxide scale for the transfer of carbon. The channels can be blocked by short exposure of the metal-dusted alloy surface to an oxidizing environment. Metal-dusting corrosion could be mitigated by selection of alloys with long incubation time and by minimizing and/or slowing the pit-growth rate using an intermediate oxidation treatment at an appropriate temperature and in an appropriate environment for a relatively short time.
机译:通过扫描电子显微镜和拉曼光谱研究了金属粉尘的引发。开发了一种铜指示器方法来识别容易被金属粉尘侵蚀的位置。研究了表面划痕对金属粉尘的影响。分析了氢气重整厂的800个合金样品。该合金形成了一种非保护性氧化皮,其主要相为具有高Fe含量的$ Fe_ {1 + x} Cr_ {2-x} O_ {4} $尖晶石。当通过氧化皮形成通道进行碳转移时,会发生金属粉尘坑的产生。可以通过使金属粉尘合金表面短时间暴露于氧化环境来阻塞通道。可以通过选择具有较长孵育时间的合金以及在适当的温度和适当的环境中使用较短时间的中间氧化处理,通过最小化和/或减慢坑的生长速率来减轻金属粉尘腐蚀。

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