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首页> 外文期刊>Tribology Transactions >Accelerated Testing to Investigate Corrosion Mechanisms of Carburized and Carbonitrided Martensitic Stainless Steel for Aerospace Bearings in Harsh Environments
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Accelerated Testing to Investigate Corrosion Mechanisms of Carburized and Carbonitrided Martensitic Stainless Steel for Aerospace Bearings in Harsh Environments

机译:加速测试,以研究恶劣环境中航空航天轴承的渗碳和碳氮化马氏体不锈钢腐蚀机制

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摘要

Carburizable martensitic stainless steels (MSSs) are attractive candidates for bearings due to their high corrosion resistance, high hardness, and high temperature performance. Wear performance in tribocorrosion applications is strongly influenced by the surrounding environment. Electrochemical testing was used to evaluate three different surface treatments on AMS 5930 steel developed for advanced gas turbine engine bearing applications: low temperature (LTT), high temperature (HTT), and carbonitrided (CN). HTT had a higher corrosion rate that increased with time, whereas LTT and CN had lower corrosion rates that were stable over time. Accelerated testing revealed that surface treatment significantly influenced how corrosion propagated: HTT was more uniform; conversely, LTT and CN showed localized attack. Degradation mechanisms developed from electrochemical methods provide rapid insight into long-term wear behavior.
机译:可渗透马氏体不锈钢(MSSS)是由于其高耐腐蚀性,高硬度和高温性能而具有轴承的有吸引力的候选者。 Tribocorion应用中的磨损性能受到周围环境的强烈影响。 电化学检测用于评估针对先进的燃气涡轮发动机轴承应用的AMS 5930钢的三种不同的表面处理:低温(LTT),高温(HTT)和碳氮化(CN)。 HTT具有更高的腐蚀速率随时间而增加,而LTT和CN具有较低的腐蚀速率随着时间的推移稳定。 加速试验显示,表面处理显着影响了腐蚀的腐蚀:HTT更均匀; 相反,LTT和CN显示了本地化攻击。 从电化学方法中产生的降解机制提供了快速洞察长期磨损行为。

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