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Kinetics of structural relaxation in bulk metallic glasses by mechanical spectroscopy: Determination of the stretching parameter βkww

机译:机械光谱学在块状金属玻璃中结构弛豫的动力学:拉伸参数βkww的确定

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Structural relaxation in Cu_(46)Zr_(45)Al_7Dy_2, Ti_(40)Zr_(25)Ni_8Cu_9Be_(18) and Zr_(41.2)Ti_(13.8)Cu_(12.5)Ni_(10)Be_(22.5) (Vit 1) bulk metallic glasses has been studied by mechanical spectroscopy during annealing below the glass transition temperature T_g. Structural relaxation in bulk metallic glasses leads to an increase of the storage modulus G' and a decrease of the loss factor tan δ, which are observed after an incubation time. Kinetics of this phenomenon can be well described by a stretched exponential, similar to the Kohlrausch -Williams-Watts (1KWW) equation used to fit differential scanning calorimetry (DSC) experiments. In the various investigated bulk metallic glasses the stretching exponent βkww does not depend on annealing temperature implying therefore that this exponent βkww is nearly independent of the microstructure. Decrease in the loss factor is due to a decrease in the atomic mobility. Various models have been proposed in the literature to describe this evolution: decrease in the free volume, decrease in the liquid-like regions or decrease in the defect concentration (flow defects or quasi-point defects). Present results are discussed using this concept of defect. In any case it corresponds to an increase of the short range order during annealing below the glass transition temperature T_g.
机译:Cu_(46)Zr_(45)Al_7Dy_2,Ti_(40)Zr_(25)Ni_8Cu_9Be_(18)和Zr_(41.2)Ti_(13.8)Cu_(12.5)Ni_(10)Be_(22.5)的结构弛豫(Vit 1)在低于玻璃化转变温度T_g的退火过程中,已经通过机械光谱学研究了大块金属玻璃。散装金属玻璃中的结构弛豫导致储能模量G'的增加和损耗因子tanδ的降低,这在孵育时间后可以观察到。此现象的动力学可以通过拉伸指数很好地描述,类似于用于拟合差示扫描量热法(DSC)实验的Kohlrausch -Williams-Watts(1KWW)方程。在各种研究的块状金属玻璃中,拉伸指数βkww不依赖于退火温度,因此该指数βkww几乎与微观结构无关。损耗因子的减小是由于原子迁移率的降低。文献中已经提出了各种模型来描述这种演变:自由体积的减少,液状区域的减少或缺陷浓度(流动缺陷或准点缺陷)的减少。使用这种缺陷的概念讨论了目前的结果。无论如何,这对应于在低于玻璃化转变温度T_g的退火期间的短程有序的增加。

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