Behavior of amorphous materials under hydrostatic pressures: A molecular dynamics simulation study

Authors
Lee, BJLee, JCKim, YCLee, SH
Issue Date
2004-10
Publisher
KOREAN INST METALS MATERIALS
Citation
METALS AND MATERIALS INTERNATIONAL, v.10, no.5, pp.467 - 474
Abstract
The atomic structural behavior of amorphous pure Ni under hydrostatic pressures has been investigated through a molecular dynamics simulation study based on a semi-empirical interatomic potential (MEAM). It was observed that the amorphous material crystallizes under hydrostatic compressive pressur e but forms nanovoids under hydrostatic tensile pressure at room temperature. These results could be explained by the volume change effect on the nucleation energy barrier during crystallization. Consistent with this explanation, stress induced increase in the energy level (decrease of energy barrier) is proposed as the main reason for the mechanically driven nanocrystallization of amorphous materials.
Keywords
EMBEDDED-ATOM-METHOD; MECHANICAL-PROPERTIES; METALLIC GLASSES; ALLOY; NANOCRYSTALLIZATION; CRYSTALLIZATION; DEFORMATION; TEMPERATURE; NI; NANOINDENTATION; EMBEDDED-ATOM-METHOD; MECHANICAL-PROPERTIES; METALLIC GLASSES; ALLOY; NANOCRYSTALLIZATION; CRYSTALLIZATION; DEFORMATION; TEMPERATURE; NI; NANOINDENTATION; stress-induced crystallization; amorphous materials; nanocrystalline; molecular dynamics; nucleation
ISSN
1598-9623
URI
https://pubs.kist.re.kr/handle/201004/137202
DOI
10.1007/BF03027350
Appears in Collections:
KIST Article > 2004
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