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Low-temperature irradiation behavior of uranium-molybdenum alloy dispersion fuel

机译:铀钼合金分散燃料的低温辐照行为

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Irradiation tests have been conducted to evaluate the performance of a series of high-density uranium-molybdenum (U-Mo) alloy, aluminum matrix dispersion fuels. Fuel plates incorporating alloys with molybdenum content in the range of 4-10 wt% were tested. Two irradiation test vehicles were used to irradiate low-enrichment fuels to approximately 40 and 70 at.% U-235 burnup in the Advanced Test Reactor at fuel temperatures of approximately 65 degreesC. The fuel particles used to fabricate dispersion specimens for most of the test were produced by generating filings from a cast rod. In general, fuels with molybdenum contents of 6 wt% or more showed stable in-reactor fission gas behavior, exhibiting a distribution of small, stable gas bubbles. Fuel particle swelling was moderate and decreased with increasing alloy content. Fuel particles with a molybdenum content of 4 wt% performed poorly, exhibiting extensive fuel-matrix interaction and the growth of relatively large fission gas bubbles. Fuel particles with 4 or 6 wt% molybdenum reacted more rapidly with the aluminum matrix than those with hi.-her-alloy content. Fuel particles produced by an atomization process were also included in the test to determine the effect of fuel particle morphology and microstructure on fuel performance for the U-10Mo composition. Both of the U-10Mo fuel particle types exhibited good irradiation performance, but showed visible differences in fission gas bubble nucleation and growth behavior. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 43]
机译:已经进行了辐射测试,以评估一系列高密度铀钼(U-Mo)合金,铝基分散体燃料的性能。测试了掺有钼含量在4-10 wt%范围内的合金的燃料板。在高级测试反应堆中,在燃料温度约为65℃时,使用了两台辐照测试车将低浓燃料辐照至U-235燃耗率分别约为40和70 at。%。用于制造大部分测试的分散体样品的燃料颗粒是通过铸造棒产生的屑产生的。通常,钼含量为6 wt%或更高的燃料表现出稳定的反应器内裂变气体行为,并表现出小的稳定气泡分布。燃料颗粒膨胀是中等的,并且随着合金含量的增加而减小。钼含量为4 wt%的燃料颗粒性能较差,表现出广泛的燃料-基质相互作用以及相对较大的裂变气泡的增长。含4或6 wt%钼的燃料颗粒与具有高合金含量的燃料颗粒的反应更快。测试中还包括通过雾化过程产生的燃料颗粒,以确定U-10Mo组合物的燃料颗粒形态和微观结构对燃料性能的影响。两种U-10Mo燃料颗粒均显示出良好的辐照性能,但在裂变气泡成核和生长行为方面显示出明显的差异。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:43]

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