首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Link between shear modulus and enthalpy changes of Ti16.7Zr16.7Hf16.7Cu16.7Ni16.7Be16.7 high entropy bulk metallic glass
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Link between shear modulus and enthalpy changes of Ti16.7Zr16.7Hf16.7Cu16.7Ni16.7Be16.7 high entropy bulk metallic glass

机译:Ti16.7zr16.7hf16.7cu16.7ni16.7be16.7高熵散装金属玻璃的剪切模量与焓变形之间的联系

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摘要

Mechanical and thermal properties of materials are intricately linked. Particularly, this fully applies to metallic glasses. In this work, we study shear modulus behavior and heat effects occurring upon heating up of Ti16.7Zr16.7HF16.7Cu16.7Ni16.7Be16.7 high entropy bulk metallic glass up to the full crystallization. In the framework of the Interstitialcy theory, we show that shear modulus relaxation data can be applied to quantitatively predict exo- and endothermal effects related to structural relaxation, glass transition and crystallization of this high entropy metallic glass. This fact suggests that the underlying physical mechanism responsible for this link can be conditioned by the relaxation of the system of structural defects, which by their properties are similar to dumbbell interstitials in metals. (C) 2020 Elsevier B.V. All rights reserved.
机译:材料的机械和热性能是凭据复杂的连接。 特别是,这完全适用于金属眼镜。 在这项工作中,我们在加热Ti16.7ZR16.7HF16.7Cu16.7Ni16.7Be16.7高熵散装金属玻璃上时,研究剪切模量行为和热效应。 在Interstitialcy理论的框架中,我们表明剪切模量松弛数据可以应用于定量预测与该高熵金属玻璃的结构松弛,玻璃化转变和结晶相关的外部和吸热效果。 这一事实表明,负责该链接的潜在物理机制可以通过放松结构缺陷的系统,其性质与金属中的哑铃间质性类似。 (c)2020 Elsevier B.v.保留所有权利。

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