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Outstanding radiation resistance of tungsten-based high-entropy alloys

  • O. El-Atwani
  • , N. Li
  • , M. Li
  • , A. Devaraj
  • , J. K.S. Baldwin
  • , M. M. Schneider
  • , D. Sobieraj
  • , J. S. Wróbel
  • , D. Nguyen-Manh
  • , S. A. Maloy
  • , E. Martinez

Research output: Contribution to journalArticlepeer-review

621 Scopus citations

Abstract

A body-centered cubic W-based refractory high entropy alloy with outstanding radiation resistance has been developed. The alloy was grown as thin films showing a bimodal grain size distribution in the nanocrystalline and ultrafine regimes and a unique 4-nm lamella-like structure revealed by atom probe tomography (APT). Transmission electron microscopy (TEM) and x-ray diffraction show certain black spots appearing after thermal annealing at elevated temperatures. TEM and APT analysis correlated the black spots with second-phase particles rich in Cr and V. No sign of irradiation-created dislocation loops, even after 8 dpa, was observed. Furthermore, nanome-chanical testing shows a large hardness of 14 GPa in the as-deposited samples, with near negligible irradiation hardening. Theoretical modeling combining ab initio and Monte Carlo techniques predicts the formation of Cr- and V-rich second-phase particles and points at equal mobilities of point defects as the origin of the exceptional radiation tolerance.
Original languageEnglish
JournalScience Advances
Volume5
Issue number3
DOIs
StatePublished - Jan 1 2019

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