材料科学
因科镍合金
摩擦学
激光喷丸
喷丸
激光器
冶金
氦
表面粗糙度
残余应力
微观结构
复合材料
合金
光学
物理
原子物理学
作者
Vasilis Tsigkis,Saifur Rahman,Lloyd A. Hackel,Keivan Davami,Ali Beheshti,Andreas A. Polycarpou
标识
DOI:10.1016/j.apsusc.2021.151961
摘要
Inconel 617 is among the best candidates for utilization in high temperature gas cooled reactor tribo-components. However, the combined effects of sliding contact, along with intermittent idle times and very high temperature material degradation, deteriorates the alloy tribological performance, especially under a helium atmosphere. Laser peening is a surface treatment technique which can enhance the properties at the surface and subsurface by generating deep residual stresses and enhanced microstructure. Herein, we report the tribological behavior of regular laser peened as well as thermally-engineered laser peened Inconel 617 under helium and air atmospheres at 800 °C. In addition to friction and wear studies, the specimens are characterized by different analytical techniques to further understand the mechanisms involved in the peening process and sliding contact. Regardless of the peening process and post-process treatment types, it is observed that laser peening improves the tribological characteristics of Inconel 617. Interestingly, laser peening followed by helium thermal aging shows highly enhanced tribological behavior. This is attributed to the strengthening effect of the laser peening on the surface oxides providing an excellent and lasting protective and lubricating film under helium exposure.
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