TY - JOUR
T1 - Modeling and Simulation of Hydrogen Behavior in Tungsten
AU - Zhou, Hongbo
AU - Li, Yuhao
AU - Lu, Guanghong
N1 - Publisher Copyright:
© All right reserved.
PY - 2018/2/11
Y1 - 2018/2/11
N2 - Based on national strategic needs for fusion energy, our group have investigated the behavior of H isotopes including dissolution, diffusion, accumulation and bubble formation in W using a firstprinciples method in combination with molecular dynamic method. It is found that the dissolution and nucleation of H in defects follow an "optimal charge density" rule, and a vacancy trapping mechanism for H bubble formation in W has been revealed. An anisotropic strain enhanced effect of H solubility due to H accumulation in W has been found, and a cascading effect of H bubble growth has been proposed. Noble gases/alloying elements doping in W has been proposed to suppress H bubble formation, because these dopants can change the distribution of charge density in defects and block the formation and nucleation of H2molecule. These works are reviewed in this paper. Our calculations will provide a good reference for the design, preparation and application of W-PFM under a fusion environment.
AB - Based on national strategic needs for fusion energy, our group have investigated the behavior of H isotopes including dissolution, diffusion, accumulation and bubble formation in W using a firstprinciples method in combination with molecular dynamic method. It is found that the dissolution and nucleation of H in defects follow an "optimal charge density" rule, and a vacancy trapping mechanism for H bubble formation in W has been revealed. An anisotropic strain enhanced effect of H solubility due to H accumulation in W has been found, and a cascading effect of H bubble growth has been proposed. Noble gases/alloying elements doping in W has been proposed to suppress H bubble formation, because these dopants can change the distribution of charge density in defects and block the formation and nucleation of H2molecule. These works are reviewed in this paper. Our calculations will provide a good reference for the design, preparation and application of W-PFM under a fusion environment.
KW - H
KW - Modelling and simulation
KW - Nuclear fusion energy
KW - Plasma facing material
KW - W
UR - https://www.scopus.com/pages/publications/85046703153
U2 - 10.11900/0412.1961.2017.00414
DO - 10.11900/0412.1961.2017.00414
M3 - 文章
AN - SCOPUS:85046703153
SN - 0412-1961
VL - 54
SP - 301
EP - 313
JO - Jinshu Xuebao/Acta Metallurgica Sinica
JF - Jinshu Xuebao/Acta Metallurgica Sinica
IS - 2
ER -