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Critical Assessment 21: oxygen-assisted fatigue crack propagation in turbine disc superalloys

机译:关键评估21:涡轮盘式高温合金中的氧气辅助疲劳裂纹扩展

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摘要

Ni-based superalloys in turbine disc applications face increasing susceptibility to oxygen-assisted fatigue crack propagation due to increased turbine entry temperatures. The continued lack of understanding of the interplay between the factors operating during oxygen-assisted fatigue crack propagation limits: (1) development of lifing methodologies to accurately predict the fatigue performance of disc alloys/components and (2) associated disc alloy developments. An underpinning requirement to better understand the role of oxygen is to characterise the process of oxygen diffusion in the localised stress/strain state at the crack tip, which is related closely to microstructural features. The link between three-dimensional crack tomography, crack propagation rate and oxygen-related attack needs to be established. Quantitative models which include the interaction between fatigue-creep-oxygen attack need further development.
机译:由于涡轮入口温度的升高,涡轮盘应用中的镍基高温合金对氧气辅助疲劳裂纹扩展的敏感性越来越高。持续缺乏对氧气辅助疲劳裂纹扩展过程中工作因素之间相互作用的理解:(1)精确研究碟形合金/部件疲劳性能的起振方法的发展;(2)相关的碟形合金发展。更好地了解氧气作用的基本要求是表征裂纹尖端局部应力/应变状态下的氧气扩散过程,这与微观结构特征密切相关。需要建立三维裂纹层析成像,裂纹扩展速率和与氧气有关的腐蚀之间的联系。包括疲劳蠕变-氧气侵蚀之间相互作用的定量模型需要进一步发展。

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