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In situ probing of the evolution of irradiation-induced defects in copper

  • N. Li
  • , K. Hattar
  • , A. Misra

Research output: Contribution to journalArticlepeer-review

36 Scopus citations

Abstract

Through in situ Cu3+ ion irradiation at room temperature in a transmission electron microscope (TEM), we have investigated the evolution of defect clusters as a function of the radiation dose at different distances from the 3 {1 1 2} incoherent twin boundary (ITB) in Cu. Post in situ ion irradiation, high resolution TEM was used to explore the types of defects, which are composed of a high-density of vacancy stacking fault tetrahedra (SFT) and sparsely distributed interstitial Frank loops. During irradiation, defect clusters evolve through four stages: (i) incubation, (ii) non-interaction, (iii) interaction and (iv) saturation; and the corresponding density was observed to initially increase with irradiation dose and then approach saturation. No obvious denuded zone is observed along the 3 {1 1 2} ITB and the configuration of defects at the boundary displays as truncated SFTs. Several defect evolution models have been proposed to explain the observed phenomena.

Original languageEnglish
Pages (from-to)185-191
Number of pages7
JournalJournal of Nuclear Materials
Volume439
Issue number1-3
DOIs
StatePublished - May 14 2013

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