Khonik S V, Granato A V, Joncich D M, Pompe A, Khonik V A
Department of General Physics, State Pedagogical University, 86 Lenin St., Voronezh 394043, Russia.
Phys Rev Lett. 2008 Feb 15;100(6):065501. doi: 10.1103/PhysRevLett.100.065501. Epub 2008 Feb 12.
The interstitialcy theory is used to calculate the kinetics of shear modulus relaxation induced by structural relaxation of metallic glasses. A continuous distribution of activation energies is shown to be a salient feature of the relaxation. High precision in situ contactless electromagnetic acoustic-transformation shear modulus (600- kHz) measurements performed on a Zr-based bulk metallic glass are found to strongly support the approach under consideration. It is revealed that the activation energy spectra derived from isothermal and isochronal shear modulus measurements are in good agreement with each other. It is concluded that the increase of the shear modulus during structural relaxation can be understood as a decrease of the concentration of structural defects similar to dumbbell interstitials in simple crystalline metals.
间隙原子理论用于计算金属玻璃结构弛豫引起的剪切模量弛豫动力学。活化能的连续分布被证明是弛豫的一个显著特征。在一种锆基块状金属玻璃上进行的高精度原位非接触电磁声变换剪切模量(600 kHz)测量,有力地支持了所考虑的方法。结果表明,由等温及等时剪切模量测量得到的活化能谱彼此吻合良好。得出的结论是,结构弛豫过程中剪切模量的增加可理解为结构缺陷浓度的降低,这类似于简单晶体金属中的哑铃状间隙原子。