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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Effects of He, D interaction on thermal desorption of He and D-2 and microstructural evolution in pure Fe
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Effects of He, D interaction on thermal desorption of He and D-2 and microstructural evolution in pure Fe

机译:He,D相互作用对纯Fe中He和D-2热解吸及组织演变的影响

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He and H atoms are produced in (n, alpha) and (n, p) nuclear reactions. In fusion reactors, energetic T and D, being isotopes of H, and He particles damage the surface materials. To investigate the He-D interaction, Fe, which is a model metal of choice in ferritic stainless steel that is used in fusion reactors, was irradiated separately by He or D-2 ions and by combinations of He + D-2 or D-2 + He ions with the energy of 5 keV. The dose for single-species irradiation and each step of double-species irradiation was 1.0 x 10(20) ions/m(2). Thermal desorption analysis indicates that, in the case of single ion species irradiation, thermal desorption of D occurs at temperatures below 700 K, while the main thermal desorption of He occurs at 750 K and above 1200 K. The binding energy of He and defects is higher than that of D and defects. In the case of irradiation with combinations of ions species, however, the obtained thermal desorption spectra are the same, although the peak intensities are different, suggesting that the He-D interaction is weak. The sorption of D is more predominant for irradiations with He + D-2. On the microstructure level, the irradiated samples exhibited larger voids following combined irradiations compared with those for irradiation with a single ion species after annealing to 1323 K. During the He + D-2 irradiation, D atoms are effectively trapped owing to the defects induced by pre-irradiation with He. (C) 2016 Elsevier B.V. All rights reserved.
机译:他和氢原子是在(n,α)和(n,p)核反应中产生的。在聚变反应堆中,高能态T和D是H和He的同位素,会破坏表面材料。为了研究He-D相互作用,Fe(聚变反应堆中使用的铁素体不锈钢中的一种典型金属)被He或D-2离子以及He + D-2或D-的组合分别辐照2 + He离子的能量为5 keV。单物种照射和双物种照射的每个步骤的剂量为1.0 x 10(20)离子/ m(2)。热脱附分析表明,在单离子物种辐照下,D的热脱附发生在700 K以下的温度,而He的主要热脱附发生在750 K和1200 K以上的温度。He和缺陷的结合能为高于D和缺陷。然而,在用离子种类的组合照射的情况下,尽管峰强度不同,但是获得的热脱附光谱是相同的,这表明He-D相互作用弱。在He + D-2辐照下,D的吸附更为主要。在微观结构水平上,与退火至1323 K后用单一离子物种进行辐照相比,组合辐照后的辐照样品显示出更大的空隙。在He + D-2辐照期间,由于原子诱导的缺陷,D原子被有效地俘获。预辐射他。 (C)2016 Elsevier B.V.保留所有权利。

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