Determination of critical cooling rates in metallic glass forming alloy libraries through laser spike annealing.

Resource type
Authors/contributors
Title
Determination of critical cooling rates in metallic glass forming alloy libraries through laser spike annealing.
Abstract
The glass forming ability (GFA) of metallic glasses (MGs) is quantified by the critical cooling rate (R C). Despite its key role in MG research, experimental challenges have limited measured R C to a minute fraction of known glass formers. We present a combinatorial approach to directly measure R C for large compositional ranges. This is realized through the use of compositionally-graded alloy libraries, which were photo-thermally heated by scanning laser spike annealing of an absorbing layer, then melted and cooled at various rates. Coupled with X-ray diffraction mapping, GFA is determined from direct R C measurements. We exemplify this technique for the Au-Cu-Si system, where we identify Au56Cu27Si17 as the alloy with the highest GFA. In general, this method enables measurements of R C over large compositional areas, which is powerful for materials discovery and, when correlating with chemistry and other properties, for a deeper understanding of MG formation.
Publication
Scientific reports
Date
2017
Volume
7
Issue
1
Pages
7155
Series
Erratum in: Sci Rep. 2018 Dec 12;8(1):17898; PMID: 30538256 [https://www.ncbi.nlm.nih.gov/pubmed/30538256]
Journal Abbr
Sci. rep.
DOI
Citation Key
bordeenithikasemDeterminationCriticalCooling2017
ISSN
2045-2322
Language
English
Library Catalog
DOI.org (Crossref)
Extra
44 citations (Crossref) [2023-10-31] Place: England Bordeenithikasem, Punnathat. Department of Mechanical Engineering and Materials Science, Yale University, New Haven, Connecticut, 06511, USA. Liu, Jingbei. Department of Mechanical Engineering and Materials Science, Yale University, New Haven, Connecticut, 06511, USA. Kube, Sebastian A. Department of Mechanical Engineering and Materials Science, Yale University, New Haven, Connecticut, 06511, USA. Li, Yanglin. Department of Mechanical Engineering and Materials Science, Yale University, New Haven, Connecticut, 06511, USA. Ma, Tianxing. Department of Mechanical and Aerospace Engineering, Rutgers University, Piscataway, New Jersey, 08854, USA. Scanley, B Ellen. Department of Physics, Southern Connecticut State University, New Haven, Connecticut, 06515, USA. Broadbridge, Christine C. Department of Physics, Southern Connecticut State University, New Haven, Connecticut, 06515, USA. Vlassak, Joost J. School of Engineering and Applied Science, Harvard University, Cambridge, Massachusetts, 02138, USA. Singer, Jonathan P. Department of Mechanical and Aerospace Engineering, Rutgers University, Piscataway, New Jersey, 08854, USA. Schroers, Jan. Department of Mechanical Engineering and Materials Science, Yale University, New Haven, Connecticut, 06511, USA. jan.schroers@yale.edu. Erratum in (EIN)
Citation
Bordeenithikasem, P., Liu, J., Kube, S. A., Li, Y., Ma, T., Scanley, B. E., Broadbridge, C. C., Vlassak, J. J., Singer, J. P., & Schroers, J. (2017). Determination of critical cooling rates in metallic glass forming alloy libraries through laser spike annealing. Scientific Reports, Erratum in: Sci Rep. 2018 Dec 12;8(1):17898; PMID: 30538256 [Https://Www.Ncbi.Nlm.Nih.Gov/Pubmed/30538256], 7(1), 7155. https://doi.org/10/gbsrh3