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Computational materials design of a corrosion resistant high entropy alloy for harsh environments

  • Pin Lu
  • , James E. Saal
  • , Greg B. Olson
  • , Tianshu Li
  • , Orion J. Swanson
  • , G. S. Frankel
  • , Angela Y. Gerard
  • , Kathleen F. Quiambao
  • , John R. Scully
  • QUESTEK INNOVATIONS LLC
  • Ohio State University
  • University of Virginia

科研成果: 期刊稿件文章同行评审

126 引用 (Scopus)

摘要

The integrated computational materials engineering approach is inherently well suited to explore the vast, multi-dimensional high entropy alloy (HEA) compositional and processing space, and has been adopted in this work, coupled with empiricism, to the design of highly corrosion resistant HEAs. Using the combination of empirical and computational approaches, three non-equimolar HEA compositions were identified for their predicted ability to form a single-phase structure and to exhibit high corrosion resistance. One of them, Ni38Cr21Fe20Ru13Mo6W2, was successfully synthesized on the lab-scale and homogenized at 1250 °C for 120 h. Exceedingly high corrosion resistance of the Ni-rich HEA was demonstrated in electrochemical testing.

源语言英语
页(从-至)19-22
页数4
期刊Scripta Materialia
153
DOI
出版状态已出版 - 8月 2018
已对外发布

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