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Influence of the water vapour content in air on the high temperature oxidation of cobalt-based alloys part 2: results in wet air

机译:空气中水蒸气含量对钴基合金高温氧化的影响:第2部分:产生湿空气

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This second part of the work carried out on the possible influence of water vapour in air on the high temperature oxidation of chromium-rich cobaltbased alloys presents the results obtained for their exposure during 46 hours at 1000, 1100 and 1200°C in 10%H2OÂ??containing air. Post-mortem characterization of the nine samples oxidized inwet air was carried out and the results compared to the ones obtained in dry air and already presented in the first part. The oxide scale spallation tended to be more severe here in wet air, notably for the carbide-free Co-10Ni-30Cr alloy. No significant differences were seen for the two other alloys. The first observations of the external fineness and morphology of the oxide scale did not reveal fundamental differences. The single point of interest was the chromium on extreme surface which were almost systematically higher after oxidation in wet air than in dry air. Future work is envisaged with higher water vapour content expecting to enhance the possible effect of water vapour.
机译:这部分工作的第二部分是对空气中水蒸气对富铬钴基合金的高温氧化的可能影响进行的研究,得出了其在10%H2O中于1000、1100和1200°C下暴露46小时的结果。含有空气。对九种被氧化的湿空气样品进行了事后表征,并将结果与​​在干燥空气中获得的结果进行了比较,并且已经在第一部分中进行了介绍。在潮湿空气中,氧化皮剥落趋于严重,特别是对于不含碳化物的Co-10Ni-30Cr合金。两种其他合金均未见明显差异。最初对氧化物鳞片的外部细度和形态的观察没有发现根本的差异。唯一的关注点是极端表面上的铬,该铬在湿空气中氧化后几乎系统地高于在干空气中。预期未来的工作将具有更高的水蒸气含量,从而有望增强水蒸气的可能作用。

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