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A study of breakaway oxidation of 9Cr-1Mo steel in a Hot CO2 atmosphere using Raman spectroscopy

机译:拉曼光谱法研究热二氧化碳气氛中9Cr-1mo钢的分离氧化

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摘要

The microstructure of the oxide scale and parent metal in ferritic 9Cr-1Mo steel was observed to explore the oxidation and carburisation mechanisms upon exposure to a CO2 gas environment at high temperature and high pressure. An experimental 9Cr-1Mo steel sample that had been oxidised at 580 degrees C for more than 165,000 hrs in coolant gas consisting primarily of CO2 was analysed. To elucidate the oxidation characterisation, scanning Raman spectrometry was used to analyse the oxide close to the metal/oxide interface. Carbon was found to be deposited in the spinel layer. The microstructure and the distribution of elemental chemical composition were examined and analysed using optical and scanning electron microscopy combined with energy dispersive X-ray analysis. The results are discussed with relation to understanding the mechanisms of oxidation and carburisation which aim to underpin extension of the service life of components fabricated from this steel.
机译:观察到铁素体9Cr-1Mo钢中氧化物尺度和母金属的微观结构,探讨在高温高压下暴露于CO2气体环境时氧化和碳化机制。 分析了在580℃下氧化超过165,000小时的实验性9Cr-1Mo钢样品,其在主要由CO 2组成的冷却剂气体中。 为了阐明氧化表征,使用扫描拉曼光谱法分析靠近金属/氧化物界面的氧化物。 发现碳沉积在尖晶石层中。 使用光学和扫描电子显微镜与能量分散X射线分析相结合进行微观结构和分析。 结果是关于了解氧化和碳化机制的讨论,该机制旨在延长由该钢制造的部件的使用寿命的延长。

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