首页> 外文会议>Nuclear Science Symposium Conference Record (NSS/MIC), 2008 IEEE >Flux dependence of cluster formation in neutron irradiated weld material - small-angle neutron scattering experiments and rate theory simulation
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Flux dependence of cluster formation in neutron irradiated weld material - small-angle neutron scattering experiments and rate theory simulation

机译:中子辐照焊接材料中团簇形成的通量依赖性-小角度中子散射实验和速率理论模拟

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Small-angle neutron scattering was applied to investigate the size distribution of irradiation-induced defect-solute clusters in a reactor pressure vessel weld material containing 0.22 wt% copper. In order to identify flux effects the material was exposed to neutron irradiations at two different levels of neutron flux in such a manner that the same value of neutron fluence was accumulated. We observed a pronounced effect of neutron flux on the cluster size, whereas the total volume fraction of the irradiation-induced clusters was found to be insensitive to the level of flux. The result is compatible with a rate theory model according to which the range of applied fluxes covers the transition from a flux-independent regime at lower fluxes to a regime of decelerating cluster growth. The issue of the effect of flux on the mechanical properties is also addressed.
机译:应用小角中子散射法研究了反应堆压力容器中含0.22 wt%铜的焊接材料中辐照引起的缺陷溶质团簇的尺寸分布。为了确定通量效应,将材料以两种不同水平的中子通量暴露于中子辐照下,以便积累相同值的中子通量。我们观察到中子通量对团簇大小有显着影响,而辐射诱导的团簇的总体积分数对通量水平不敏感。该结果与速率理论模型兼容,根据该理论模型,所施加的通量范围涵盖了从较低通量的独立于通量的状态到降低簇生长的状态的过渡。还解决了助焊剂对机械性能的影响问题。

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