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MOLECULAR DYNAMICS STUDY ON STRUCTURAL RELAXATION OF METALLIC GLASSES

机译:金属眼镜结构松弛的分子动力学研究

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Structural relaxation process in the Zr-Cu metallic glasses is investigated by using molecular dynamics simulations. The enthalpy change in isothermal annealing of the glassy state cannot be fitted by a simple exponential function but obeys a stretched exponential function, which indicates that the relaxation in glassy phase is not a single Debye type process. A close examination of individual atomic motion reveals that the enthalpy relaxation is related to a string-like cooperative motion of atoms. The analysis of the local symmetry around each atom shows that a network of the icosahedral clusters grows in the glassy phases during annealing and it closely relates to the free-volume annihilation in the structural relaxation.
机译:通过使用分子动力学模拟研究了Zr-Cu金属玻璃中的结构弛豫过程。等温退火的玻璃状态的焓变化不能通过简单的指数函数装配,而是遵循拉伸指数函数,这表明玻璃相中的弛豫不是单一的德语型工艺。对单个原子运动的密切检查表明,焓弛豫与原子的串状协作运动有关。对每个原子周围的局部对称的分析表明,ICOSaheDral簇的网络在退火期间的玻璃状相中生长,并且它与结构松弛的自由湮灭密切相关。

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