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  • Full length article9R phase enabled superior radiation stability of nanotwinned Cu alloys via in situ radiation at elevated temperature

  • Add time:08/16/2019    Source:sciencedirect.com

    Nanotwinned metals exhibit outstanding radiation tolerance as twin boundaries effectively engage, transport and eliminate radiation-induced defects. However, radiation-induced detwinning may reduce the radiation tolerance associated with twin boundaries, especially at elevated temperatures. Here we show, via in-situ Kr ion irradiation inside a transmission electron microscope, that 3 at. % Fe in epitaxial nanotwinned Cu (Cu97Fe3) significantly improves the thermal and radiation stability of nanotwins during radiation up to 5 displacements-per-atom at 200 °C. Such enhanced stability of nanotwins is attributed to a diffuse 9R phase resulted from the dissociation of incoherent twin boundaries in nanotwinned Cu97Fe3. The mechanisms for the enhanced stability of twin boundaries in irradiated nanotwinned alloys are discussed. The stabilization of nano-twins opens up opportunity for the application of nanotwinned alloys for aggressive radiation environments.

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    Prev:Regular articleMicrostructure and mechanical behavior of nanotwinned AlTi alloys with 9R phase
    Next:Effect of stacking fault energy on the split length of 9R phase in coarse-grained Cu-Al alloys)

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