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INVESTIGATION OF ALUMINIDES AS POTENTIAL MATRIX MATERIALS FOR INERT MATRIX NUCLEAR FUELS

机译:铝作为惰性基质核燃料的潜在基质材料的研究

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New nuclear fuel forms are being sought in an effort to burn down plutonium inventories and for minor actinide transmutation. A study was conducted to screen two potential materials for a new fuel form. In this study, inert matrix fuels (IMFs) were considered as a nuclear fuel type, with particular emphasis on the matrix materials and their compatibility with surrogate oxidesitrides and cladding materials. In a fuel cycle application, fuel materials need high thermal conductivity, good radiation tolerance, relatively high melting point, ease of fabrication, and suitability for separation. Due to their physical, mechanical and thermal properties, as well as relative ease of fabrication, nickel aluminide (NiAl) and ruthenium aluminide (RuAl) and their solid solutions were considered as potential matrix candidates for IMFs. Such IMFs can be of interest for fast and thermal spectrum applications. This study focused on the ease of fabrication, interaction of molten NiAl and RuAl with the oxidesitrides, and the compatibility of NiAl and RuAl with the materials in the system, such as oxideitrides and typical cladding materials (Zr-4 and HT-9). Results from the experiments indicate limited interaction between the aluminides and cladding materials where inter-diffusion over the 168 hour test period occurred in the worst case a distance of about 11 μm. In light of the results, it was concluded that RuAl and NiAl are promising candidates for IMF materials, warranting further investigation.
机译:正在寻求新的核燃料形式,以减少burn的库存并进行少量的act系元素trans变。进行了一项研究,以筛选两种可能的材料以形成新的燃料形式。在这项研究中,惰性基体燃料(IMF)被认为是核燃料类型,特别强调基体材料及其与替代氧化物/氮化物和包覆材料的相容性。在燃料循环应用中,燃料材料需要高导热率,良好的辐射耐受性,相对较高的熔点,易于制造以及适于分离。由于它们的物理,机械和热性能,以及相对容易制造,铝化镍(NiAl)和铝化钌(RuAl)及其固溶体被认为是IMF的潜在基质候选物。这样的IMF对于快速和热光谱应用可能是令人感兴趣的。这项研究的重点是易于制造,熔融NiAl和RuAl与氧化物/氮化物的相互作用以及NiAl和RuAl与系统中材料的相容性,例如氧化物/氮化物和典型的包层材料(Zr-4和HT -9)。实验结果表明,铝化物和覆层材料之间的相互作用有限,在168小时的测试时间内发生了相互扩散,最坏的情况是大约11μm的距离。根据结果​​,可以得出结论,RuAl和NiAl是有前景的IMF材料候选者,有待进一步研究。

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