Journal of Materials Research and Technology (Jan 2023)

Phase-field simulation of nano-α′ precipitates under irradiation and dislocations

  • Wenkui Yang,
  • Xinan Jiang,
  • Xiaolin Tian,
  • Hua Hou,
  • Yuhong Zhao

Journal volume & issue
Vol. 22
pp. 1307 – 1321

Abstract

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This is the first investigation on the micromorphology and kinetics evolution of Cr-rich α′ precipitates under Cr composition, irradiation and dislocation with the three-dimensional phase-field simulation. The statistical results of volume fraction, particle number density, and average particle size under different Cr composition are consistent with the APT results. The particle density and volume fraction of α′ precipitates increase with the increase of Cr composition (>9 at.%), while the mean radius decreases. Fitting the free energy curve to analyze the driving force and resistance of α′ precipitates. It is found that α′ precipitates preferentially nucleate in the dislocation core region due to the drive of dislocation elastic energy, while the nucleation in the dislocation free region is driven by chemical free energy. Growth of α′ precipitates is driven by chemical free energy and interface energy. The particle size distribution of 3dpa shows that the particle size distribution of α′ precipitates becomes more uniform with the increase of dislocation density. The strengthening model calculated from the simulation results shows that the Cr component has a great influence on the strengthening, and the total strength increases slightly with the increase of dislocation density.

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