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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >U-10Zr and U-5Fs: Fuel/cladding chemical interaction behavior differences
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U-10Zr and U-5Fs: Fuel/cladding chemical interaction behavior differences

机译:U-10ZR和U-5FS:燃料/包层化学相互作用行为差异

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A fuel performance phenomenon that has previously limited the peak cladding temperature of metallic fast reactor fuel is fuel/cladding chemical interaction (FCCI). This study examined the differences in the phenomenon exhibited by the more recent fuel alloy, U-10Zr and a previously used fuel alloy, U-5Fs (Fs - fissium). Fs is comprised of Mo, Ru, Pd, Zr and Rh simulated fission products representing reprocessing carryover. Studies on the U-Zr alloy had shown the often controlling influence on FCCI of lanthanide (Ln) fission products (Ln: Ce, Nd, Sm, etc.) while a review of the U-Fs alloy behavior indicated a dominance of basic fuel/cladding interdiffusion (Fe, Ni with U). The recent studies on U-Zr fuel showed that migration of lanthanide fission products to the fuel/cladding interface facilitated the Ln dominance of FCCI behavior. This study was focused on understanding why Ln's do not migrate in the U-5Fs alloy to the extent that they do in U-10Zr, or why they do not interact with the cladding like in U-10Zr fuel pins. A small fuel/cladding interaction layer was found containing the cladding and lanthanide components. However, it was also found that the lanthanide fission products are at least partially bound to agglomerates that also contained Pd, Rh and Zr, all minor components of Fs. (C) 2019 Elsevier B.V. All rights reserved.
机译:先前限制了金属快速反应器燃料的峰包层温度的燃料性能现象是燃料/包层化学相互作用(FCCI)。本研究检测了更新燃料合金,U-10ZR和先前使用的燃料合金U-5FS(FS - FISSium)所展示的现象的差异。 FS由Mo,Ru,Pd,Zr和Rh模拟裂变产品组成,代表再处理携带。对U-ZR合金的研究显示了对镧系元素(LN)裂变产物(LN:Ce,Nd,Sm等)对FCCI的影响往往对FCCI的影响有所影响,同时对U-FS合金行为的审查表示基本燃料的主导地位/覆层间隔(Fe,Ni与U)。最近对U-ZR燃料的研究表明,镧系裂变产物迁移到燃料/包层界面的促进了FCCI行为的LN优势。本研究重点是理解为什么LN在U-5FS合金中迁移到U-10ZR的程度,或者为什么他们不会像U-10ZR燃料销一样与包层相互作用。发现含有包层和镧系元素的小燃料/包层相互作用层。然而,还发现,镧系元素裂变产物至少部分地与也含有Pd,RH和Zr的聚集酯,FS的所有次要组分。 (c)2019 Elsevier B.v.保留所有权利。

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