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首页> 外文期刊>Materials at High Temperatures >An overview of the oxidation of Ni-based superalloys for turbine disc applications: surface condition, applied load and mechanical performance
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An overview of the oxidation of Ni-based superalloys for turbine disc applications: surface condition, applied load and mechanical performance

机译:涡轮盘应用中的镍基高温合金的氧化概述:表面条件,施加的载荷和机械性能

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摘要

In this review, the role of oxidation of chromia-forming Ni-based superalloys used for rotor disc applications in gas turbines is examined. A detailed review of the oxidation performance of these alloys in air is undertaken with emphasis on oxide composition and kinetics. The actual surface condition of the component entering service is important but often overlooked during oxidation studies. The effect of shot-peening on the oxidation of Ni-based superalloys is here evaluated. The oxide growth rates and composition of these alloys was assessed with respect to their response to an applied load or stress. One area where a significant amount of research has been conducted is on the effect of oxidation on the mechanical performance, with oxidation having been shown to reduce time to crack initiation, increase fatigue crack growth rates and therefore reduce overall component fatigue life. It is argued that this enhancement in crack growth rates arises from the cracking of an oxide intrusion ahead of the crack tip, exacerbated by stress-aided grain boundary oxidation.
机译:在这篇综述中,研究了用于燃气轮机转子盘应用的氧化铬形成镍基高温合金的氧化作用。对这些合金在空气中的氧化性能进行了详细的审查,重点是氧化物的组成和动力学。组件投入使用的实际表面状况很重要,但在氧化研究中经常被忽略。在此评估喷丸处理对镍基高温合金氧化的影响。就它们对施加的载荷或应力的响应,评估了这些合金的氧化物生长速率和组成。进行了大量研究的领域之一是氧化对机械性能的影响,氧化已被证明可以减少裂纹萌生的时间,增加疲劳裂纹的生长速率并因此降低整体零件的疲劳寿命。有人认为,裂纹扩展速率的这种提高是由于裂纹尖端之前的氧化物侵入物的开裂而引起的,应力辅助的晶界氧化加剧了裂纹的扩展。

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