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Pronounced Plasticity Caused by Phase Separation and β-relaxation Synergistically in Zr–Cu–Al–Mo Bulk Metallic Glasses

机译:Zr-Cu-Al-Mo块状金属玻璃中由相分离和β弛豫协同引起的明显可塑性

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摘要

Bulk metallic glasses (BMGs) are known to have extraordinary merits such as ultrahigh strength and dynamic toughness etc. but tied to the detrimental brittleness, which has become a critical issue to the engineering application and understanding the glass nature. In this article, we report a new class of Zr-Cu-Al-Mo BMGs with extraordinary plastic strain above 20%. “Work-hardening” effect after yielding in a wide range of plastic deformation process has been detected for this kind of BMGs. Compositional heterogeneity, which can be classified into ZrMo- and Cu-rich zones, was differentiated in this kind of BMG. Pronounced humps have been observed on the high frequency kinetic spectrum in Mo containing BMGs, which is the indicator of β-relaxation transition. The underlying mechanism for the excellent plastic deforming ability of this class of BMGs is ascribed to the synergistic effects of soft ZrMo-rich glass formed through phase separation and abundant flow units which related to β-relaxation.
机译:众所周知,块状金属玻璃(BMG)具有非凡的优点,例如超高强度和动态韧性等,但与有害的脆性相关,这已成为工程应用和了解玻璃性质的关键问题。在本文中,我们报告了一种新型的Zr-Cu-Al-Mo BMG,其塑性应变超过20%。对于这种BMG,已经在广泛的塑性变形过程中屈服之后发现了“加工硬化”效应。这种BMG可以区分出可分为ZrMo和Cu富集区的成分异质性。在含钼的BMGs的高频动力学谱中观察到明显的峰,这是β-松弛转变的指标。这类BMG具有出色的塑性变形能力的根本机理归因于通过相分离形成的富含ZrMo的软玻璃和大量与β松弛相关的流动单元的协同效应。

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