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Merging of the alpha and beta relaxations and aging via the Johari–Goldstein modes in rapidly quenched metallic glasses

机译:通过快速淬火的金属玻璃中的Johari–Goldstein模式合并alpha和beta弛豫和老化

摘要

This paper provides evidence that the physical aging of deeply and rapidly quenched metallic glasses is promoted by the Johari–Goldstein slow beta relaxation, resulting in a significant irreversible increase in the mechanical modulus on initial heating. Dynamic mechanical analysis has been used to characterize relaxation phenomena of a strong and a fragile metallic glass. In addition, we can extrapolate the temperature dependence of beta- and alpha-relaxation peaks to higher temperatures and calculate the merging temperature for both types of glasses.
机译:本文提供的证据表明,Johari-Goldstein缓慢的β弛豫促进了深层和快速淬火的金属玻璃的物理老化,从而导致初始加热时机械模量显着不可逆地增加。动态力学分析已被用来表征强而脆的金属玻璃的松弛现象。此外,我们可以将β松弛峰和α松弛峰的温度相关性外推到更高的温度,并计算两种类型眼镜的合并温度。

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