首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Cascade and subcascade structure in fission neutron irradiated fcc metals and their correlation to fusion neutron irradiation
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Cascade and subcascade structure in fission neutron irradiated fcc metals and their correlation to fusion neutron irradiation

机译:裂变中子辐照的fcc金属的级联和亚级联结构及其与聚变中子辐照的关系

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摘要

Thin foil specimens of Cu and Au were irradiated with fission neutrons at 285-295 K to neutron fluences of 7 x 10(21) n m(-2) (>0.1 MeV), using the Kyoto University Reactor. The structure of cascades and subcascades was examined by fitting the experimentally observed distribution of vacancy-type defect clusters to the calculated primary recoil energy spectrum, and was compared directly with that for fusion neutron irradiation. In Cu, 70% of cascades consist of only one defect cluster and 2% of more than four clusters. This is in contrast to larger cascades produced by 14 MeV neutrons that contain more than 10 clusters and extend 60 nm in diameter. The subcascade energy was 18 and 15 keV for Cu and Au, respectively. These values are about 30-60% higher than those obtained for fusion neutron irradiation. (C) 2004 Elsevier B.V. All rights reserved.
机译:使用京都大学反应堆,以285-295 K的裂变中子辐照Cu和Au的薄片样品,使中子通量达到7 x 10(21)n m(-2)(> 0.1 MeV)。通过将实验观察到的空位型缺陷簇的分布与计算的一次反冲能谱进行拟合,来检查级联和子级联的结构,并直接与聚变中子辐照进行比较。在铜中,级联的70%仅由一个缺陷簇组成,而在四个以上的簇中则占2%。这与由14个MeV中子产生的更大的级联形成对比,这些中子包含10个以上的簇并且直径扩展60 nm。铜和金的亚级联能量分别为18和15 keV。这些值比聚变中子辐照获得的值高约30-60%。 (C)2004 Elsevier B.V.保留所有权利。

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