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首页> 外文期刊>Materials & design >Plasticizing and work hardening in phase separated Cu-Zr-Al-Nb bulk metallic glasses by deformation induced nanocrystallization
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Plasticizing and work hardening in phase separated Cu-Zr-Al-Nb bulk metallic glasses by deformation induced nanocrystallization

机译:形变诱导纳米晶化相分离Cu-Zr-Al-Nb块状金属玻璃的增塑和加工硬化

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摘要

In this work, we report a class of phase separated Cu94-xZrxAl5.5Nb0.5 (x = 41, 44, 47, 50 at.%) bulk metallic glasses (BMGs) with extraordinary plastic strain up to 43% and work hardening effect featured in the compression strength compared with the yielding strength. Through the characterization of the microstructure, compositional distribution, free volume and activation energy of crystallization, the underlying mechanism for the plasticizing and work hardening has been investigated. It is confirmed that the structural heterogeneity due to the phase separation results in the formation of high density of free volume and low activation energy for crystallization. The deformation induced nanocrystallization (DINC) takes place in the whole region, especially in shear bands (SBs). The DINC may reduce the instabilization of SBs, resulting in the slow-down of the propagation of SBs and the initiation of more primary and secondary SBs from soft to hard region. This may be considered as the underlying mechanism for the plasticizing and work hardening of these BMGs. (c) 2018 Elsevier Ltd. All rights reserved.
机译:在这项工作中,我们报告了一类相分离的Cu94-xZrxAl5.5Nb0.5(x = 41、44、47、50 at。%)大块金属玻璃(BMG),其塑性应变高达43%,并且具有加工硬化效果与屈服强度相比,抗压强度高。通过表征微观组织,组成分布,自由体积和结晶活化能,研究了塑化和加工硬化的潜在机理。已经证实,由于相分离而导致的结构异质性导致形成高密度的自由体积和低结晶活化能。形变诱导纳米结晶(DINC)发生在整个区域,特别是在剪切带(SBs)中。 DINC可以减少SB的不稳定,从而导致SB的传播变慢,并引发更多的从软区域到硬区域的初级和次级SB。这可以被认为是这些BMG塑化和加工硬化的基本机制。 (c)2018 Elsevier Ltd.保留所有权利。

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