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  • Cite this article:

    Hai-Yang Song, Yu-Long Li. Effect of amorphous lamella on the crack propagation behavior of crystalline Mg/amorphous Mg-Al nanocompositesJ. Chin. Phys. B, 2016, 25(2): 026802.
    Hai-Yang Song, Yu-Long Li. Effect of amorphous lamella on the crack propagation behavior of crystalline Mg/amorphous Mg-Al nanocompositesJ. Chin. Phys. B, 2016, 25(2): 026802.
  • Effect of amorphous lamella on the crack propagation behavior of crystalline Mg/amorphous Mg-Al nanocomposites

    • The effects of amorphous lamella on the crack propagation behavior in crystalline/amorphous (C/A) Mg/Mg-Al nanocomposites under tensile loading are investigated using the molecular dynamics simulation method. The sample with an initial crack of orientation (1210) 0001 is considered here. For the nano-monocrystal Mg, the crack growth exhibits brittle cleavage. However, for the C/A Mg/Mg-Al nanocomposites, the 'double hump' behavior can be observed in all the stress-strain curves regardless of the amorphous lamella thickness. The results indicate that the amorphous lamella plays a critical role in the crack deformation, and it can effectively resist the crack propagation. The above mentioned crack deformation behaviors are also disclosed and analyzed in the present work. The results here provide a strategy for designing the high-performance hexagonal-close-packed metal and alloy materials.
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