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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Influence of temperature and electronic stopping power of UO_2 irradiated with swift ions on Mo migration
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Influence of temperature and electronic stopping power of UO_2 irradiated with swift ions on Mo migration

机译:快速离子辐照UO_2的温度和电子停止能力对Mo迁移的影响

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Molybdenum migration was studied in polycrystalline UO2 pellets under irradiation with swift ions. Mo-95 isotope was introduced in the samples by ion implantation at a maximum concentration of 0.8 at.%. Irradiation conditions were chosen in order to understand, from a fundamental point of view, the behaviour of Mo in nuclear fuel during reactor operation. In this paper, the effect of three electronic stopping power values (7, 15 and 30 keV.nm(-1)) were investigated at different temperatures (room temperature, 600 degrees C and 1000 degrees C). The Mo concentration profiles before and after irradiation were measured by SIMS (Secondary Ion Mass Spectrometry). Raman spectroscopy was used to probe the defect creation or annealing in the UO2 microstructure. It was evidenced that Mo is very stable in the UO2 matrix as it migrates only for irradiation conditions combining a S-e value of 15 or 30 keV.nm(-1) and a temperature value of 1000 degrees C.
机译:研究了多晶UO2颗粒在快速离子辐照下的钼迁移。通过离子注入将Mo-95同位素引入样品中,最大浓度为0.8 at。%。选择辐射条件是为了从根本上理解反应堆运行期间Mo在核燃料中的行为。在本文中,研究了在不同温度(室温,600摄氏度和1000摄氏度)下三个电子停止功率值(7、15和30 keV.nm(-1))的影响。通过SIMS(二次离子质谱法)测量照射前后的Mo浓度分布。拉曼光谱法用于探测UO2微结构中的缺陷产生或退火。已证明Mo在UO2基质中非常稳定,因为它仅在结合15-或30 keV.nm(-1)的S-e值和1000摄氏度的温度的辐照条件下迁移。

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