Author:
Dong Jie,Feng Yi-Hui,Huan Yong,Yi Jun,Wang Wei-Hua,Bai Hai-Yang,Sun Bao-An
Abstract
We report an enhanced rejuvenation in hot-drawn micrometer metallic glassy wires (MG wires) with the size reduction. Compared to metallic glasses (MGs) in bulk form, the modulus and hardness for the micro-scale MG wires, tested by nanoindentation methods, are much lower and decrease with the decreasing size, with a maximum decrease of ∼26% in modulus and ∼17% in hardness. This pronounced rejuvenation is evidenced by the larger sub-T
g relaxation enthalpy of the MG wires. The pronounced rejuvenation is physically related to the higher energy state induced by a combined effect of severely thermomechanical shearing and freezing the shear flow into a constrained small-volume region. Our results reveal that the internal states and properties of MGs can be dramatically changed by a proper modulation of temperature, flow stress and size.
Subject
General Physics and Astronomy
Cited by
13 articles.
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