Microscopic phase-field simulation of the coarsening behavior of coherent precipitates in Ni-Al alloys

Yanli Lu, Zheng Chen, Yongxin Wang, Yongsheng Li

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1 Scopus citations

Abstract

On the basis of the microscopic phase-field dynamic model and the microelasticity theory, the characteristics of the coarsening behavior of γ' phase in Ni-Al alloys have been systematically studied in a certain volume fraction of the precipitates. It was found that the initial irregular shape, randomly distributed γ' phase, gradually transformed into cuboidal shape, regularly aligned along the [100] and [010] directions, and a highly preferential selected microstructure was formed during the later stage of precipitation. The volume fraction of the precipitates produced some effects on the precipitate morphology but did not produce an obvious effect on the regularities of precipitate distribution. The coarsening rate constant from the cubic growth law decreased as a function of volume fraction for small volume fractions, remained constant for intermediate volume fractions, and increased as a function of volume fraction for large volume fractions. During the coherent coarsening process, four "splitting" patterns between γ' phases, which belonged to different antiphase domains, were produced via particle aggregation, such as an L-shaped pattern, a doublet, a triplet, and a quartet.

Original languageEnglish
Pages (from-to)161-166
Number of pages6
JournalJournal of University of Science and Technology Beijing: Mineral Metallurgy Materials (Eng Ed)
Volume15
Issue number2
DOIs
StatePublished - Apr 2008

Keywords

  • coarsening
  • elastic strain
  • microscopic phase-field
  • Ni-Al alloy
  • precipitates
  • simulation

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