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Improvement of the zirconium diffusion barrier between lanthanide (La-Ce) and a clad material by hydrothermal crystallization

Authors
Jee, Seung HyunLee, Kang SooKim, Jun HwanYoon, Young Soo
Issue Date
Nov-2013
Publisher
ELSEVIER SCIENCE BV
Keywords
Rare-earth intermetallics; Diffusion; Phase interfaces; Energy systems
Citation
CURRENT APPLIED PHYSICS, v.13, no.9, pp.1995 - 2000
Journal Title
CURRENT APPLIED PHYSICS
Volume
13
Number
9
Start Page
1995
End Page
2000
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/14160
DOI
10.1016/j.cap.2013.08.005
ISSN
1567-1739
Abstract
Hydrothermal crystallization was conducted to improve the diffusion barrier performance of Zr thin films to prevent a fuel clad chemical interaction (FCCI) at the interface between a clad material and lanthanide elements (Mischmetal: 75Ce-25La; intermetallic compound) as fission product. The crystalline phase and size of Zr thin films deposited on a HT9 disk by RF magnetron sputtering were varied by hydrothermal crystallization in an autoclave at 393 K, 423 K and 453 K. Diffusion couple tests of the clad with and without a Zr diffusion barrier were performed at 933 K for 25 h with mischmetal, which have diffusion properties similar to uranium metal composite fuel. While substantial FCCI occurred at the interface between the mischmetal and clad in the specimen without hydrothermal crystallization, the Zr barrier with hydrothermal crystallization showed excellent resistance to FCCI. The performance of the Zr FCCI barrier was improved due to a decrease in interdiffusion by the grain boundary, which can increase the FCCI in the Zr barrier. (C) 2013 Elsevier B. V. All rights reserved.
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