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Hybrid simulation research on formation mechanism of tungsten nanostructure induced by helium plasma irradiation

Authors :
Arimichi Takayama
Mitsutaka Miyamoto
Tatsunori Hattori
Ryo Kobayashi
Yasuyuki Noiri
Shin Kajita
Shuji Ogata
Takahiro Murashima
Hiroaki Nakamura
Yoshihide Yoshimoto
Seiki Saito
Y. Oda
Tomoyuki Tamura
Noriyasu Ohno
Atsushi Ito
Miyuki Yajima
Shuichi Takamura
Source :
Journal of Nuclear Materials. 463:109-115
Publication Year :
2015
Publisher :
Elsevier BV, 2015.

Abstract

The generation of tungsten fuzzy nanostructure by exposure to helium plasma is one of the important problems for the use of tungsten material as divertor plates in nuclear fusion reactors. In the present paper, the formation mechanisms of the helium bubble and the tungsten fuzzy nanostructure were investigated by using several simulation methods. We proposed the four-step process which is composed of penetration step, diffusion and agglomeration step, helium bubble growth step, and fuzzy nanostructure formation step. As the fourth step, the formation of the tungsten fuzzy nanostructure was successfully reproduced by newly developed hybrid simulation combining between molecular dynamics and Monte-Carlo method. The formation mechanism of tungsten fuzzy nanostructure observed by the hybrid simulation is that concavity and convexity of the surface are enhanced by the bursting of helium bubbles in the region around the concavity.

Details

ISSN :
00223115
Volume :
463
Database :
OpenAIRE
Journal :
Journal of Nuclear Materials
Accession number :
edsair.doi...........615a3b5b9c53a1a3038a0afb3162c0ee
Full Text :
https://doi.org/10.1016/j.jnucmat.2015.01.018