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Ultrafast extreme rejuvenation of metallic glasses by shock compression

机译:通过冲击压缩超快恢复金属玻璃的活力

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摘要

Structural rejuvenation of glasses not only provides fundamental insights into their complicated dynamics but also extends their practical applications. However, it is formidably challenging to rejuvenate a glass on very short time scales. Here, we present the first experimental evidence that a specially designed shock compression technique can rapidly rejuvenate metallic glasses to extremely high-enthalpy states within a very short time scale of about 365 ± 8 ns. By controlling the shock stress amplitude, the shock-induced rejuvenation is successfully frozen at different degrees. The underlying structural disordering is quantitatively characterized by the anomalous boson heat capacity peak of glasses. A Deborah number, defined as a competition of time scales between the net structural disordering and the applied loading, is introduced to explain the observed ultrafast rejuvenation phenomena of metallic glasses.
机译:眼镜的结构复兴不仅可以为眼镜的复杂动力学提供基本的见识,而且可以扩展其实际应用。然而,在非常短的时间尺度上使玻璃恢复活力是巨大的挑战。在这里,我们提供了第一个实验证据,即经过特殊设计的冲击压缩技术可以在大约365±8 ns的极短时间内将金属玻璃快速恢复到极高的焓态。通过控制冲击应力振幅,可以成功地不同程度地冻结由冲击引起的复兴。潜在的结构紊乱在定量上以玻璃的玻色子热容峰异常为特征。引入Deborah数(定义为净结构无序与施加的载荷之间的时间尺度竞争)来解释观察到的金属玻璃的超快复兴现象。

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