Irradiation-induced patterning in dilute Cu–Fe alloys

Compositional patterning in dilute Cu1−xFex (x≈12%) induced by 1.8MeV Kr+ irradiation was studied as a function of temperature using atom probe tomography. Irradiation near room temperature led to homogenization of the sample, whereas irradiation at 300°C and above led to precipitation and macroscop...

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Veröffentlicht in:Journal of nuclear materials 2014-10, Vol.453 (1-3), p.66-74
Hauptverfasser: Stumphy, B., Chee, S.W., Vo, N.Q., Averback, R.S., Bellon, P., Ghafari, M.
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Sprache:eng
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Zusammenfassung:Compositional patterning in dilute Cu1−xFex (x≈12%) induced by 1.8MeV Kr+ irradiation was studied as a function of temperature using atom probe tomography. Irradiation near room temperature led to homogenization of the sample, whereas irradiation at 300°C and above led to precipitation and macroscopic coarsening. Between these two temperatures the irradiated alloys formed steady state patterns of composition where precipitates grew to a fixed size. The size in this regime increased somewhat with temperature. It was also observed that the steady state concentrations of Fe in Cu matrix and Cu in the Fe precipitates both greatly exceeded their equilibrium solubilities, with the degree of supersaturation in each phase decreasing with increasing temperature. In the macroscopic coarsening regime, the Fe-rich precipitates showed indications of a “cherry-pit” structure, with Cu precipitates forming within the Fe precipitates. In the patterning regime, interfaces between Fe-rich precipitates and the Cu-rich matrix were irregular and diffuse.
ISSN:0022-3115
1873-4820
DOI:10.1016/j.jnucmat.2014.06.039