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Structural origin for vibration-induced accelerated aging and rejuvenation in metallic glasses

机译:振动诱导的加速老化和金属眼镜复兴的结构起源

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摘要

Glassy materials are nonequilibrium and their energy states have crucial influences on properties. Recent studies have shown that oscillating deformations (vibrations) can cause either accelerated aging (lowering energy) or rejuvenation (elevating energy); however, the underlying atomic mechanisms remain elusive. Using metallic glasses (MGs) as model systems, we show that the vibration-induced accelerated aging is correlated with the strain field of the stringlike atomic motions stemming from the Johari-Goldstein (beta) relaxation, whereas the rejuvenation is associated with nonlinear response and the formation of nanoscale shear bands attributing to the activation of alpha relaxation. Both processes are affected by thermal fluctuations, which result in an optimal temperature for accelerated aging. These results suggest intrinsic correlations among relaxation dynamics, mechanical properties, and the vibration induced structural rearrangements in MGs. Published under license by AIP Publishing.
机译:玻璃状物质不合格,它们的能量状态对性质对性质至关重要。最近的研究表明,振荡变形(振动)可导致加速老化(降低能量)或恢复活力(升高能量);然而,潜在的原子机制仍然难以捉摸。使用金属眼镜(MGS)作为模型系统,我们表明振动诱导​​的加速老化与来自Johari-Goldstein(β)松弛的弦纤维原子动作的应变场相关,而恢复活力与非线性反应相关形成归因于α弛豫激活的纳米剪力条带。这两种过程受到热波动的影响,这导致加速老化的最佳温度。这些结果表明了弛豫动力学,机械性能和振动诱导的MGS中的内在相关性。通过AIP发布在许可证下发布。

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