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Structural mechanism of glass forming ability in Zr-based binary alloys

Title
Structural mechanism of glass forming ability in Zr-based binary alloys
Author
김덕수
Keywords
Metallic glass; Molecular dynamics simulation; Voronoi tessellation; Free volume; Microstructure; Glass forming ability
Issue Date
2020-11
Publisher
ELSEVIER SCI LTD
Citation
INTERMETALLICS, v. 126, article no. 106911, page. 1-2
Abstract
This study presents a computational framework to investigate the structural mechanism of glass forming ability (GFA) by carefully comparing two model systems of Zr-based binary metallic glasses (MGs) with distinct GFAs, Zr2Cu and Zr2Ni. Based on the Voronoi diagram of three-dimensional spherical atoms, the free volume, the cluster regularity, and the atomic packing efficiency in the atomic structure of Zr2Cu and Zr2Ni MGs are efficiently and accurately calculated as a function of temperature during quenching from melts to MGs. The glass transitions were found to occur with the fractional free volume reaching a seemingly universal value at similar to 2%-3%. Although the glass states of both MGs show very similar linear temperature-dependent behavior, their supercooled liquid states behave quite differently, e.g., the structure of Zr2Cu changes much faster than that of Zr2Ni, and by extrapolating the temperature dependence of the free volume of liquids, the free-volume could quickly vanish in the Zr2Cu supercooled liquid at similar to 210 K, while it remains even down to 0 K in Zr2Ni. In addition, Zr2Cu has higher atomic packing density and cluster regularity at low temperature region, also is more spatially homogeneous than Zr2Ni. These results reveal clear structure characteristics which are associated with the viscosity of the supercooled liquids and the Gibbs energy of glass states, therefore, the GFA and stability of MGs.
URI
https://www.sciencedirect.com/science/article/pii/S0966979520303575?via%3Dihubhttps://repository.hanyang.ac.kr/handle/20.500.11754/172097
ISSN
0966-9795; 1879-0216
DOI
10.1016/j.intermet.2020.106911
Appears in Collections:
COLLEGE OF ENGINEERING[S](공과대학) > MECHANICAL ENGINEERING(기계공학부) > Articles
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