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Microstructural Stability of M5#8482; Alloy Irradiated up to High Neutron Fluences

机译:M5™合金照射到高中中子流量的微观结构稳定性

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The present paper is focused on the microstructural stability of the Framatome-ANP M5™ (Zr-1%NbO) alloy. Thin foils were cut from M5 cladding tubes irradiated from 1 to 6 annual cycles in EDF PWRs, and examined by analytical transmission electron microscopy (TEM). The results show that within the wide range of irradiation conditions investigated, the initial β-Nb particles undergo no amorphisation and only minor evolutions in size distribution, number density, and composition. Finally, very few < c > component basal loops were detected, so that no sign of accelerated growth regime has to be feared for the fuel burn-ups currently considered (~70 GWd/t) for PWRs. In the second part of this paper, other industrial or experimental alloys (Zy-4, M4, Zr-2.5%Nb, ZrNbSnFe) are considered to improve our knowledge about the irradiation-induced evolution of β-Nb and other minor SPP. Thin foils were cut from specimens irradiated in PWRs or MTRs (OSIRIS, SILOE) and also examined by transmission electron microscopy. In addition, Small Angle Neutron Scattering (SANS) was used to provide quantitative and statistical information on the radiation-enhanced precipitation of β-Nb needles and possible other defects or solute clusters. All these results allow a general discussion of evolution of SPP with regard to their initial structure and composition, and of the noteworthy irradiation stability of the M5™ up to high neutron fluence with respect to other alloys.
机译:本文的重点是Framatome-ANP M5™(ZR-1%NBO)合金的微观结构稳定性。从EDF PWR中的1至6年每年循环照射的M5覆层管中切割薄箔,并通过分析透射电子显微镜(TEM)检查。结果表明,在所研究的各种照射条件下,初始β-Nb颗粒无常见,并且仅尺寸分布,数密度​​和组成的微小演变。最后,检测到很少的组分基础环路,因此不得担心加速增长制度的迹象对于目前考虑的燃料烧伤(〜70 gwd / t)。在本文的第二部分,认为其他工业或实验合金(ZY-4,M4,ZR-2.5%NB,ZrNBSNFE)被认为是提高我们对β-NB和其他次要SPP的辐照诱导的演化的知识。从PWR或MTR(Osiris,Siloe)中照射的试样切割薄箔,并通过透射电子显微镜检查。此外,使用小角度中子散射(SAN)提供有关β-NB针的辐射增强沉淀的定量和统计信息,以及可能的其他缺陷或溶质簇。所有这些结果允许对其初始结构和组成的SPP演化以及M5™的不值得值得注意的辐照稳定性相对于其他合金。

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