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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Confirmatory investigations on the flux effect and associated unstable matrix damage in RPV materials exposed to high neutron fluence
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Confirmatory investigations on the flux effect and associated unstable matrix damage in RPV materials exposed to high neutron fluence

机译:对暴露于高中子注量的RPV材料的通量效应和相关的不稳定基质破坏的验证性研究

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摘要

This paper provides additional experimental data on the neutron flux effect on RPV hardening and embrittlement and on the so-called unstable matrix damage that was suggested to occur at high flux. Six materials taken from the first irradiation surveillance capsules of Belgian PWRs with a fluence not exceeding about 1.5 × 10~(19) n/cm~2 were further irradiated in the BR2 high flux reactor to additional fluences ranging between about 1 and 1.5 × 10~(20) n/cm~2 at 290 °C. Eight additional RPV materials were selected to investigate the flux effect on irradiation hardening. No statistically-significant difference in irradiation hardening for low and high flux could be evidenced from the null hypothesis test applied with the general linear model. This is confirmed by additional experiments where fourteen irradiated specimens of various RPV materials consisting of low to high Cu and Ni contents were annealed at 350°C for 5 h to eventually reveal some recovery of the unstable matrix damage. The results did not show any recovery upon heat treatment, which indicates that unstable matrix defects did not appear in these materials during irradiation at high flux.
机译:本文提供了有关中子通量对RPV硬化和脆化以及所谓的不稳定基体损伤的其他实验数据,据称该不稳定基体损伤是在高通量下发生的。从比利时PWR的第一个辐照监视胶囊中采集的六种材料的通量不超过1.5×10〜(19)n / cm〜2,在BR2高通量反应堆中进一步辐照至大约1到1.5×10的通量。在290°C下约为(20)n / cm〜2选择了八种其他RPV材料来研究通量对辐照硬化的影响。从通用线性模型进行的原假设检验中,无法证明低通量和高通量的辐射硬化在统计学上有显着差异。这通过其他实验得到了证实,在该实验中,将14种由低到高的Cu和Ni含量组成的RPV材料的辐照样品在350°C退火5 h,最终发现了一些不稳定基质损坏的恢复。结果没有显示出在热处理后的任何恢复,这表明在高通量照射期间这些材料中没有出现不稳定的基质缺陷。

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