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Accurate quantification of glass-forming ability by measuring effective volume relaxation of supercooled melt
Author(s) -
Chae Woo Ryu,
Daekyoung Kang,
Sangho Jeon,
Geun Woo Lee,
Eun Soo Park
Publication year - 2017
Publication title -
apl materials
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.571
H-Index - 60
ISSN - 2166-532X
DOI - 10.1063/1.4999357
Subject(s) - supercooling , materials science , relaxation (psychology) , thermodynamics , volume (thermodynamics) , glass transition , amorphous metal , kinetic energy , metallurgy , composite material , polymer , alloy , psychology , social psychology , physics , quantum mechanics
Herein, we elucidate how to accurately quantify glass-forming ability (GFA) by measuring effective volume relaxation of supercooled melt. We propose a new parameter, denoted as κ, for representing the relaxation, which is calculated by combining temperature-dependent changes of normalized specific volume reflecting relative volume relaxation with the normalized temperature range reflecting the relative position of the C curve in a Time-Temperature-Transformation (TTT) diagram. The interrelationship between the κ parameter and critical cooling rate is elaborated by measuring V-T diagrams and TTT diagrams of Zr55Co26Al19 and Zr46Cu30.14Al8Ag8.36Be7.5 glass-forming alloys and discussed in comparison with representative GFA parameters reported up to date. These results would give us a guideline on how to precisely evaluate GFA by linking volumetric aspect to thermodynamic and kinetic aspects for glass formation and help develop customized glass-forming alloys as well as a highly precise control of glass formation process

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