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First-principles study of He trapping in η-Fe_2C
引用本文:赫丙玲,王金龙,田之雪,蒋利娟,宋薇,王斌.First-principles study of He trapping in η-Fe_2C[J].中国物理 B,2016,25(11):116801-116801.
作者姓名:赫丙玲  王金龙  田之雪  蒋利娟  宋薇  王斌
作者单位:1.College of Physics and Electronic Engineering, Xinxiang University, Xinxiang 453003, China;2.College of Physics and Information Engineering, Hebei Normal University, Shijiazhuang 050024, China
基金项目:Project supported by the Research Key Project of Science and Technology of Education Bureau of Henan Province, China (Grant Nos. 14A140030, 15A140032, 15B150010, and 15A430037) and the Innovation Talents Program of Science and Technology of Institution of Higher Education of Henan Province, China (Grant No. 14HASTIT044).
摘    要:The distribution of He in η-Fe_2C has been studied by first-principles calculations.The formation energies of interstitial He and substitutional He(replacing Fe) are 3.76 eV and 3.49 eV,respectively,which are remarkably smaller than those in bcc Fe,indicating that He is more soluble in η-Fe_2C than in bcc Fe.The binding potencies of both a substitutionalinterstitial He pair(1.28 eV) and a substitutional-substitutional He pair(0.76 eV) are significantly weaker than those in bcc Fe.The binding energy between the two He atoms in an interstitial-interstitial He pair(0.31 eV) is the same as that in bcc Fe,but the diffusion barrier of interstitial He(0.35 eV) is much larger than that in bcc Fe,suggesting that it is more difficult for the interstitial He atom to agglomerate in η-Fe_2C than in bcc Fe.Thus,self-trapping of He in η-Fe_2C is less powerful than that in bcc Fe.As a consequence,small and dense η-Fe_2C particles in ferritic steels might serve as scattered trapping centers for He,slow down He bubble growth at the initial stage,and make the steel more swelling resistant.

收稿时间:2016-06-02
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