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XPS characterization of oxide films formed in cobalt-based alloys during corrosion tests at high temperature

机译:高温腐蚀试验过程中钴基合金中形成的氧化膜的XPS表征

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Hard-facing cobalt-based alloys, type Stellite-6, are widely used for wear resistance in components of nuclear reactor coolant circuits. In this work, high-temperature (290 degrees C) corrosion tests have been performed under simulated pressurized-water reactor (PWR) primary heat transport circuit conditions at two different pi-Is, The corrosion resistance of this alloy was evaluated by weight-loss measurements in long-term tests. Surface analysis of the samples, using x-ray-photoelectron spectroscopy (XPS) and subsequent composition-depth profiles, was performed in order to characterize the oxide films (composition, thickness, etc.) formed during exposure at high temperature. Quantitatively different oxide film thicknesses were detected in the two conditions studied, but only slight qualitative differences were observed in the composition of the oxide layers. rn both conditions the results seem to show that the corrosion mechanism of this alloy is characterized by preferential dissolution of cobalt and the formation of a protective chromium oxide film. Copyright (C) 2000 John Wiley & Sons, Ltd. [References: 22]
机译:Stellite-6型硬质合金钴基合金广泛用于核反应堆冷却剂回路组件的耐磨性。在这项工作中,在模拟压水堆(PWR)初级传热回路条件下,在两个不同的pi-Is下,进行了高温(290摄氏度)腐蚀试验,通过失重评估了该合金的耐腐蚀性长期测试中的测量。使用X射线光电子能谱(XPS)和随后的成分深度分布图对样品进行表面分析,以表征高温下曝光过程中形成的氧化膜(成分,厚度等)。在所研究的两个条件下检测到数量不同的氧化膜厚度,但在氧化层的组成中仅观察到细微的质量差异。在两种情况下,结果似乎表明该合金的腐蚀机理的特征在于钴的优先溶解和形成保护性氧化铬膜。版权所有(C)2000 John Wiley&Sons,Ltd. [引用:22]

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