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The microstructural evolution of zircaloy-4 subjected to proton irradiation
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The microstructural evolution of zircaloy-4 subjected to proton irradiation

J.J. Kai, W.I. HuangH.Y. Chou
Journal of Nuclear Materials, 卷.170(2), 頁碼.193-209
1990

摘要

Nuclear and High Energy Physics Nuclear Energy and Engineering Materials Science (all)
Various thermo-mechanically treated Zircaloy-4 specimens which were subjected to 1 MeV H + irradiation at 350° C up to a total dose of 1 dpa were studied by transmission electron microscopy (TEM). It was observed that the proton irradiation has a great effect on the microstructural evolution in this alloy. In β-quenched specimens, the original fine ZrFe 2 (fcc) particles which were decorated along the lamellae boundary were gradually dissolved following the subsequent thermo-mechanical treatment or by the proton irradiation. Radiation-enhanced precipitate coarsening was observed for the Zr(Cr, Fe) 2 (hcp) precipitate phase after irradiation. In β-annealed specimens, the starting phase of the precipitates was identified as a complex structure (hcp and fcc) Laves phase of Zr(Cr, Fe) 2 . Proton irradiation enhanced the phase transformation from the C14 (hcp) phase to the C15 (fcc) phase. A new phase was also occasionally observed in one type of specimens, B6, irradiated to 1 dpa. This phase was identified as Zr 4 Sn (tetragonal) phase. It is concluded that after a long time exposure, the microstructural evolution of Zircaloy-4 cladding material will be dominanted only by irradition. © 1990.

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