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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Use of ion beams to simulate reaction of reactor fuels with their cladding
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Use of ion beams to simulate reaction of reactor fuels with their cladding

机译:使用离子束模拟反应堆燃料及其包壳的反应

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摘要

Processes occurring within reactor cores are not amenable to direct experimental observation. Among major concerns are damage, fission gas accumulation and reaction between the fuel and its cladding all of which lead to swelling. These questions can be investigated through simulation with ion beams. As an example, we discuss the irradiation driven interaction of uranium-molybdenum alloys, intended for use as low-enrichment reactor fuels, with aluminum, which is used as fuel cladding. Uranium-molybdenum coated with a 100 nm thin film of aluminum was irradiated with 3 MeV Kr ions to simulate fission fragment damage. Mixing and diffusion of aluminum was followed as a function of irradiation with RBS and nuclear reaction analysis using the ~(27)Al(p,γ)~(28)Si reaction which occurs at a proton energy of 991.9 keV. During irradiation at 150 ℃, aluminum diffused into the uranium alloy at a irradiation driven diffusion rate of 30 nm~2/dpa. At a dose of 90 dpa, uranium diffusion into the aluminum layer resulted in formation of an aluminide phase at the initial interface. The thickness of this phase grew until it consumed the aluminum layer. The rapid diffusion of Al into these reactor fuels may offer explanation of the observation that porosity is not observed in the fuel particles but on their periphery.
机译:反应堆堆芯内发生的过程不适合直接进行实验观察。其中最主要的问题是损坏,裂变气体积累以及燃料及其包层之间的反应,所有这些都会导致膨胀。这些问题可以通过用离子束模拟来研究。例如,我们讨论了铀-钼合金与铝的辐照驱动相互作用,铝与钼被用作燃料包壳,铀-钼合金拟用作低浓反应堆燃料。用3 MeV Kr离子辐照涂有100 nm铝薄膜的铀钼,以模拟裂变碎片破坏。铝的混合和扩散是随RBS辐射和使用〜(27)Al(p,γ)〜(28)Si反应的核反应分析而发生的,该反应在质子能量为991.9 keV时发生。在150℃辐照期间,铝以30 nm〜2 / dpa的辐照驱动扩散速率扩散到铀合金中。在90 dpa的剂量下,铀扩散到铝层中导致在初始界面形成铝化物相。该相的厚度增加,直到它消耗了铝层。 Al迅速扩散到这些反应堆燃料中可提供以下观察结果的解释:在燃料颗粒中未观察到孔隙,但在其外围观察到了孔隙。

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