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Irradiation Induced Vacancy-Cu Aggregations in Fe-Cu Model Alloys of Reactor Pressure Vessel Steels Studied by Positron Annihilation

机译:用正电子An没研究反应堆压力容器钢的Fe-Cu模型合金中的辐照空位Cu聚集体

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Fe-Cu model alloys (0, 0.05, 0.15, 0.30 and 1.00 wt.%Cu) of Nuclear Reactor Pressure Vessel Steels irradiated by fast neutrons (8.3 x 10~(18)n/cm~2) at about 100°C are studied by positron annihilation spectroscopy, positron lifetime and coincidence Doppler broadening, in order to analyze the irradiation-induced vacancy-Cu aggregation. We have observed nanovoids (vacancy clusters) whose inner surfaces are covered by Cu atoms in not only high and medium Cu (0.15-1.0 wt.%) alloys but also low Cu (0.05 wt.%) alloys. The typical size of the nanovoids and the fraction of the covering with Cu on the inner surfaces depend on the Cu content. The dissociation of vacancies from the nanovoids by the post-irradiation isochronal annealing at about 400°C leads to the formation of the ultrafine Cu precipitates even for the Fe-0.05wt.%Cu alloy.
机译:快中子(8.3 x 10〜(18)n / cm〜2)在大约100°C照射的核反应堆压力容器钢的Fe-Cu模型合金(0、0.05、0.15、0.30和1.00 wt。%Cu)为通过正电子an没光谱研究,正电子寿命和符合多普勒展宽,以分析辐照引起的空位-铜聚集。我们已经观察到纳米空隙(空位簇),其内表面不仅在高和中铜(0.15-1.0 wt。%)合金中而且在低铜(0.05 wt。%)合金中都被铜原子覆盖。纳米空隙的典型尺寸和内表面上覆盖有Cu的比例取决于Cu的含量。通过约400℃的辐射后等时退火,从纳米空隙中解离空位,即使对于Fe-0.05wt。%Cu合金,也形成了超细的Cu析出物。

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