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The fretting corrosion behaviors of Inconel 690 in cathodic condition (CC) and anodic condition (AC) in water environment were investigated. The results indicated that fretting wear behavior, wear mechanism and the microstructure evolution mechanisms in the subsurface strongly depended on polarization condition. There was a thin wear debris layer (WDL) and a thick tribologically transformed structure...
The subsurface layers underneath the worn surface of Inconel 690 alloy subjected to dry fretting wear at 220°C in air were characterized. The results indicated that there are five layers: oxide layer, mixed layer, TTS layer, plastic deformation layer and base materials in the subsurface. In addition, duplex microstructure evolution took place during the fretting wear. The stable oxide layer of NiCr...
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