Helium effect on the stability of the interface of Cu/W nanomultilayer

Author:

Liu Wang ,Wu Qi-Qi ,Chen Shun-Li ,Zhu Jing-Jun ,An Zhu ,Wang Yuan ,

Abstract

In this paper, Cu/W nanomultilayers with different modulation periods are prepared in pure Ar and mixing atmosphere (He and Ar) by radio frequency magnetron sputtering method. The helium content, cross-section morphology and phase structure of Cu/W nanomultilayer are characterized by EPBS, SEM and XRD, repectively. The results show that the stable interface of the nanomultilayer is the prerequisite for resisting and the guarantee against the damage of helium. The nanomultilayer can suppress the growth of helium bubbles under the appropriate modulation.

Publisher

Acta Physica Sinica, Chinese Physical Society and Institute of Physics, Chinese Academy of Sciences

Subject

General Physics and Astronomy

Reference24 articles.

1. Chaouadi R, Hirai T, Linke J, Pintsuk G 2009 J. Nucl. Mater. 386-388 544

2. Ronchi C, Hiernaut J P 2004 J. Nucl. Mater. 325 5

3. Fabritsiev S A, Pokrovsky A S 1988 J. Nucl. Mater. 258-263 1995

4. Zhang C H, Chen K Q, Wang Y S, Sun J G 1997 Acta Phys. Sin. 46 1774 (in Chinese) [张崇宏, 陈克勤, 王引书, 孙继光 1997 物理学报 46 1774]

5. Fabritsiev S A, Pokrovsky A S 2003 Fusion Eng. Des. 62 551

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