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Mechanical properties of Zr57Nb5Al10Cu15.4Ni12.6 metallic glass matrix particulate compositesMechanical properties of Zr57Nb5Al10Cu15.4Ni12.6 metallic glass matrix particulate composites

Other Titles
Mechanical properties of Zr57Nb5Al10Cu15.4Ni12.6 metallic glass matrix particulate composites
Authors
Conner, RD (Conner, RD)Choi-Yim, H (Choi-Yim, H)Johnson, WL (Johnson, WL)
Issue Date
Aug-1999
Publisher
MATERIALS RESEARCH SOCIETY
Citation
JOURNAL OF MATERIALS RESEARCH, v.14, no.8, pp 3292 - 3297
Pages
6
Journal Title
JOURNAL OF MATERIALS RESEARCH
Volume
14
Number
8
Start Page
3292
End Page
3297
URI
https://scholarworks.sookmyung.ac.kr/handle/2020.sw.sookmyung/150035
DOI
10.1557/JMR.1999.0445
ISSN
0884-2914
2044-5326
Abstract
To increase the toughness of a metallic glass with the nominal composition Zr57Nb5Al10Cu15.4Ni12.6, it was used as the matrix in particulate composites reinforced with W, WC, Ta, and SiC. The composites were tested in compression and tension experiments. Compressive strain to failure increased by more than 300% compared with the unreinforced Zr57Nb5Al10Cu15.4Ni12.6, and energy to break of the tensile samples increased by more than 50%. The increase in toughness came from the particles restricting shear band propagation, promoting the generation of multiple shear bands and additional fracture surface area. There was direct evidence of viscous flow of the metallic glass matrix within the confines of the shear bands.
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