首页> 外文期刊>Physica Scripta: An International Journal for Experimental and Theoretical Physics >Effects of self-interstitial atom on behaviors of hydrogen and helium in tungsten
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Effects of self-interstitial atom on behaviors of hydrogen and helium in tungsten

机译:自夸任理原子对钨氢和氦行为的影响

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摘要

Neutron irradiation induces a large number of vacancies and self-interstitial atoms (SIAs) that interact with hydrogen atoms (H) and degrade the mechanical properties of tungsten (W) in a fusion environment. Vacancies increase free space and trap H atoms, however, the effects of SIAs on trapping H atoms are still unclear since SIAs decrease free space. We therefore perform systematical ab initio calculations to study the interactions of SIAs and SIAs clusters with H atoms in W. Our results suggest that SIA < 111 > dumbbell makes interstitial H atoms easy to accumulate in W. With accumulation of H atoms near a SIA < 111 > dumbbell, the binding energy decreases firstly and then levels off at about 0.3 eV. For comparison, the interactions of SIAs and SIAs clusters with helium (He) atoms are considered. It is found that SIAs and SIAs clusters can also act as trapping centers for interstitial He atoms. The combinations of SIAs with H and He hinder the fast movement of SIAs in W to annihilate with vacancies, increasing the concentrations of SIAs and vacancies in grain. SIAs and vacancies provide more sites for trapping H and He atoms and thus increase irradiation damage in W. We therefore suggest reducing retention of H isotopes and He in W to suppress irradiation damage.
机译:中子辐射诱导大量空位和自鼻间原子(SIAS)与氢原子(H)相互作用,并降解融合环境中钨(W)的机械性能。空缺增加自由空间和陷阱H原子,然而,由于SIA减小了自由空间,SiAS对捕获H原子的影响仍不清楚。因此,我们进行系统的AB初始计算,以研究SIAS和SIAS簇在W中的H原子的相互作用。我们的结果表明SIA <111>哑铃使空质H原子易于积聚在W.附近SIA附近的H原子的累积< 111>哑铃,结合能量首先降低,然后在约0.3eV下脱落。为了进行比较,考虑SAS和SAS簇的相互作用(HE)原子。发现SIAS和SIAS集群也可以充当分型他原子的诱捕中心。 SIAS与H的组合及他阻碍了W中的SIAS的快速流动与空位,增加了颗粒的浓度和谷物的职位空缺。 SIA和空缺提供更多用于捕获H和HE原子的网站,从而增加W的辐照损伤。因此,我们表明减少了H同位素的保留,并在W中抑制了照射损害。

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