Reversible polyamorphic transitions in Ce65.5Al10Cu22.5Co2 metallic glass

2016 
Abstract We report here on a reversible polyamorphic transition in Ce 65.5 Al 10 Cu 22.5 Co 2 metallic glasses under high pressure investigated by in situ angle-dispersive x-ray diffraction. The alloy is found to display a strong hysteresis in polyamorphic-phase transition upon application and subsequent release of pressure. We demonstrate that, the hysteresis behavior was caused by the densification of Ce-based metallic glasses under high pressure, which was resulted by the irreversible annihilation of free volume and elastic volume change. The transition is strongly correlated 4f-electron delocalization of Ce metal. These results provide a guidance for understanding mechanism of polyamorphic-phase transition in metallic glasses.
    • Correction
    • Source
    • Cite
    • Save
    • Machine Reading By IdeaReader
    30
    References
    3
    Citations
    NaN
    KQI
    []