Glass-forming ability, phase formation and mechanical properties of glass-forming Cu-Hf-Zr alloys

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Date
2019
Volume
29
Issue
5
Journal
Series Titel
Book Title
Publisher
Amsterdam : Elsevier B.V.
Abstract

The influence of Hf additions on the glass-forming ability (GFA), phase formation and mechanical properties of Cu50HfxZr50-x (x = 2,5,10,20 at.%) alloys has been systematically investigated. We report on a distinct correlation between phase formation and GFA of Cu50Zr50-based alloys. Increasing additions of Hf reduce the thermal stability of the high-temperature B2 Cu(Hf,Zr) phase, while the thermal stability of the corresponding undercooled melt is enhanced. The GFA of these alloy series gradually raises up to 10 at.% Hf, whereas at 20 at.%Hf, the GFA is drastically lowered, since the B2 Cu(Hf,Zr) phase becomes unstable and the precipitation of the low-temperature equilibrium phases is favoured. This interrelation determines the microstructure and results in the formation of Cu-Hf-Zr-based bulk metallic glass composites. These composites not only show appreciable macroscopic plastic strain, but also high yield strength.

Description
Keywords
Composites, Continuous cooling transformation (CCT) diagram, Glass-forming ability, Mechanical properties, Metallic glasses
Citation
Kosiba, K., Song, K., Kühn, U., Wang, G., & Pauly, S. (2019). Glass-forming ability, phase formation and mechanical properties of glass-forming Cu-Hf-Zr alloys. 29(5). https://doi.org//10.1016/j.pnsc.2019.08.009
License
CC BY-NC-ND 4.0 Unported