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Formation and mechanical properties of a Zr73Al8Cu6Ni13 bulk metallic glass composite containing in-situ beta-Zr dendrites
2021-09-02 11:09  

Y.H. Li, W. Zhang. Journal of Alloys and Compounds, 2019, 801:175-180.

Abstract:

The variations of structure and mechanical properties with sample diameter (d) for ZrAlCuNi alloys containing a high Zr content of 73at.% were investigated. A Zr73Al8Cu6Ni13 alloy forms a single glassy phase with a d of 1.0mm and changes to a composite of β-Zr dendrites dispersing homogeneously in metallic glass matrix when the d increases to 1.5–3.0mm. The Zr73Al8Cu6Ni13 bulk metallic glass composites (BMGCs) exhibit high compressive plastic strain of over 35% without final failure, superior to that of 4.5% for the ϕ1.0mm bulk metallic glass (BMG) sample, and the yield strength of ∼1510MPa is comparable to the BMG. The mechanisms of formation of the β-Zr dendrites and plasticity improvement of the BMGCs were also discussed.

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