Fe-based Amorphous Alloy with High Strength and Toughness Synthesized based on nm-scale Phase Separation

Authors
Lee, Kwang-BokPark, Kyoung-WonYi, Sang-HoLee, Jae-Chul
Issue Date
2010-01
Publisher
KOREAN INST METALS MATERIALS
Citation
KOREAN JOURNAL OF METALS AND MATERIALS, v.48, no.1, pp.1 - 7
Abstract
Experiments have demonstrated that the addition of a moderate amount of V to Fe52Co(20-x)B20Si4Nb4Vx amorphous alloy enhances the plasticity of the alloy. In particular, Fe52Co17.5B20Si4Nb4V2.5 alloy withstood a maximum of 8.3% strain prior to fracture along with a strength exceeding 4.7 GPa. Energy dispersive x-ray spectroscopy conducted on the Fe52Co17.5B20Si4Nb4V2.5 alloy exhibited evidence of compositional modulation, indicating that nm-scale phase separation had occurred at local regions. In this study, the role played by nm-scale phase separation on the plasticity was investigated in terms of structural disordering and shear localization in order to better understand the structural origin of the enhanced plasticity shown by the developed alloy.
Keywords
BULK GLASSY ALLOYS; METALLIC-GLASS; MECHANICAL-PROPERTIES; CU-ZR; SIMULTANEOUS IMPROVEMENT; ELASTOSTATIC STRESS; SUPERHIGH STRENGTH; FORMING ABILITY; PLASTIC-FLOW; 4000 MPA; BULK GLASSY ALLOYS; METALLIC-GLASS; MECHANICAL-PROPERTIES; CU-ZR; SIMULTANEOUS IMPROVEMENT; ELASTOSTATIC STRESS; SUPERHIGH STRENGTH; FORMING ABILITY; PLASTIC-FLOW; 4000 MPA; amorphous alloy; phase-separation; structural disordering; shear localization; plasticity
ISSN
1738-8228
URI
https://pubs.kist.re.kr/handle/201004/131836
DOI
10.3365/KJMM.2010.48.01.001
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KIST Article > 2010
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