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Carbon Nanotubes Enhance the Radiation Resistance of bcc Iron Revealed by Atomistic Study

机译:碳纳米管通过原子学研究增强了密件抄送铁的抗辐射性

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摘要

With extra space, a carbon nanotube (CNT) could serve as an absorber of point defects, including helium interstitials, and outgas the accumulate helium via “nano-chimneys”. The radiation resistance of CNT/Fe has still not been fully understood. Herein, we investigated the influence of CNTs on low-energy helium irradiation resistance in CNT/Fe composites by molecular dynamic simulations. CNTs reduced the small and medium He clusters in the Fe matrix. When the incident energy of the He atoms was 300 eV, the He atoms aggregated at the outer surface of CNTs. CNTs postponed the formation of He bubbles. When the irradiation energy was higher than 600 eV, He atoms could penetrate the walls of CNTs and form clusters inside the single-walled CNTs or the space in double-walled CNTs—the latter presented better performance. The reduction of Frenkel pair point defects suggested the enhancement of radiation resistance by the presentation of CNTs. Our results might be useful for the material design of advanced steels for radiation resistance.
机译:有了额外的空间,碳纳米管(CNT)可以用作点缺陷(包括氦间隙)的吸收剂,并通过“纳米烟囱”排出积聚的氦气。 CNT / Fe的抗辐射性仍未完全了解。在这里,我们通过分子动力学模拟研究了碳纳米管对碳纳米管/铁复合材料中低能氦辐射抗性的影响。碳纳米管还原了铁基质中的中小型He团簇。当He原子的入射能量为300 eV时,He原子在CNT的外表面聚集。碳纳米管推迟了氦气泡的形成。当辐射能量高于600 eV时,He原子可以穿透CNT的壁并在单壁CNT内或双壁CNT中的空间中形成簇-后者表现出更好的性能。弗伦克尔对点缺陷的减少表明碳纳米管的存在增强了抗辐射性。我们的结果可能对高级钢的抗辐射性材料设计有用。

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