• Acta Physica Sinica
  • Vol. 69, Issue 4, 046103-1 (2020)
Liang-Fu Zhou1, Jing Zhang1, Wen-Hao He1, Dong Wang2, Xue Su1, Dong-Yang Yang1, and Yu-Hong Li1、*
Author Affiliations
  • 1School of Nuclear Science and Technology, Lanzhou University, Lanzhou 730000, China
  • 2School of Materials Science and Engineering, Tsinghua University, Beijing 100084, China
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    DOI: 10.7498/aps.69.20191069 Cite this Article
    Liang-Fu Zhou, Jing Zhang, Wen-Hao He, Dong Wang, Xue Su, Dong-Yang Yang, Yu-Hong Li. The nucleation and growth of Helium hubbles at grain boundaries of bcc tungsten: a molecular dynamics simulation[J]. Acta Physica Sinica, 2020, 69(4): 046103-1 Copy Citation Text show less
    The punching-loop at the early stage of nucleation and growth of helium clusters in bulk W
    Fig. 1. The punching-loop at the early stage of nucleation and growth of helium clusters in bulk W
    The nucleation and growth of helium clusters at grain boundary ∑3[211](110) in W: (a) 0.043 ns, 8 He, 1 SIA; (b) 0.120 ns, 24 He, 6 SIAs; (c) 0.125 ns, 24 He, 6 SIAs; (d) 0.466 ns, 93 He, 21 SIAs; (e) 0.469 ns, 94 He, 22 SIAs; (f) 0.470 ns, 94 He, 22 SIAs
    Fig. 2. The nucleation and growth of helium clusters at grain boundary ∑3[211](110) in W: (a) 0.043 ns, 8 He, 1 SIA; (b) 0.120 ns, 24 He, 6 SIAs; (c) 0.125 ns, 24 He, 6 SIAs; (d) 0.466 ns, 93 He, 21 SIAs; (e) 0.469 ns, 94 He, 22 SIAs; (f) 0.470 ns, 94 He, 22 SIAs
    The nucleation and growth of helium clusters at grain boundary ∑9[110](411) in W: (a) 0.02 ns, 3 He, 1 SIA; (b) 0.1 ns, 19 He, 7 SIAs; (c) 0.5 ns, 99 He, 23 SIAs; (d) 1 ns, 199 He, 44 SIAs; (e) 2 ns, 399 He, 121 SIAs; (f) 2 ns
    Fig. 3. The nucleation and growth of helium clusters at grain boundary ∑9[110](411) in W: (a) 0.02 ns, 3 He, 1 SIA; (b) 0.1 ns, 19 He, 7 SIAs; (c) 0.5 ns, 99 He, 23 SIAs; (d) 1 ns, 199 He, 44 SIAs; (e) 2 ns, 399 He, 121 SIAs; (f) 2 ns
    Calculation of the migration barrier for a W crowdion defect in bulk W
    Fig. 4. Calculation of the migration barrier for a W crowdion defect in bulk W
    Calculation of the migration barrier for a W crowdion defect at grain boundary ∑3[211](110) in W
    Fig. 5. Calculation of the migration barrier for a W crowdion defect at grain boundary ∑3[211](110) in W
    Calculation of the migration barrier for a W crowdion defect at grain boundary ∑9[110](411) in W
    Fig. 6. Calculation of the migration barrier for a W crowdion defect at grain boundary ∑9[110](411) in W
    (a) The radius and pressure of the He bubble as a function of simulation time in bulk W; (b) the radius and pressure of the He bubble as a function of simulation time at at grain boundary ∑3[211](110); (c) the radius and pressure of the He bubble as a function of simulation time at at grain boundary ∑9[110](411)
    Fig. 7. (a) The radius and pressure of the He bubble as a function of simulation time in bulk W; (b) the radius and pressure of the He bubble as a function of simulation time at at grain boundary ∑3[211](110); (c) the radius and pressure of the He bubble as a function of simulation time at at grain boundary ∑9[110](411)
    缺陷位置弗伦克尔缺陷对的形成能/eV
    单晶W中14.10
    ∑3[211](110)晶界处12.73
    ∑9[110](411)晶界处3.84
    Table 1.

    Formation energy of frenkel defect pair in bulk W and at grain boundaries.

    单晶W及晶界处弗伦克尔缺陷对的形成能

    Liang-Fu Zhou, Jing Zhang, Wen-Hao He, Dong Wang, Xue Su, Dong-Yang Yang, Yu-Hong Li. The nucleation and growth of Helium hubbles at grain boundaries of bcc tungsten: a molecular dynamics simulation[J]. Acta Physica Sinica, 2020, 69(4): 046103-1
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