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Oxidation of Materials in Supercritical Water Environment

机译:超临界水环境中的材料氧化

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Supercritical water is being considered as a cooling medium for the next generation nuclear reactors because it provides for high thermal efficiency and plant simplification. However, materials corrosion has been identified as a critical problem because of the oxidative nature of supercritical water. A number of Cr-containing ferritic steels as well as austenitic steels have been evaluated for corrosion in SCW environment at temperatures up to 600℃ after exposure durations of up to 1000 hours. The ferritic steels develop a distinct two-layered oxide structure, consisting of an outer magnetite layer and an inner Fe-Cr oxide spinel layer. Surface modification was noted to improve oxidation resistance of these steels. Austenitic steels exhibited a higher oxidation resistance, but in some cases oxide spallation was observed. Oxide spallation in these steels was mitigated by thermo-mechanical treatments aimed at enhancing the population of low energy grain boundaries.
机译:超临界水被认为是下一代核反应堆的冷却介质,因为它可以提高热效率并简化工厂。然而,由于超临界水的氧化性质,材料腐蚀已被确定为关键问题。在暴露时间长达1000小时之后,已经评估了许多含Cr铁素体钢和奥氏体钢在SCW环境中温度高达600℃时的腐蚀性能。铁素体钢形成独特的两层氧化物结构,由外磁铁矿层和内Fe-Cr氧化物尖晶石层组成。注意到表面改性可改善这些钢的抗氧化性。奥氏体钢具有较高的抗氧化性,但在某些情况下会观察到氧化物剥落。这些钢的氧化物剥落通过旨在增强低能晶界的热机械处理得以缓解。

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