Zobrazeno 1 - 4
of 4
pro vyhledávání: '"Motoki Shimozori"'
Autor:
Hiroki Ushida, Ryotaro Yamamoto, Kazunari Katayama, Satoshi Fukada, Tsuyoshi Hoshino, Motoki Shimozori
Publikováno v:
Fusion Engineering and Design. :1808-1811
In this study, weight reduction of Li 2 TiO 3 with excess Li and Li 4 SiO 4 at elevated temperatures under hydrogen atmosphere or water vapor atmosphere was investigated. The Li mass loss for the Li 2 TiO 3 at 900 °C was 0.4 wt% under 1000 Pa H 2 at
Autor:
Satoshi Fukada, Masabumi Nishikawa, Hiroki Ushida, Kazunari Katayama, Shohei Matsuda, Motoki Shimozori
Publikováno v:
Fusion Science and Technology. 67:467-470
F82H is a primary candidate of structural material and coolant pipe material in a blanket of a fusion reactor. Understanding tritium permeation behavior through F82H is important. In a normal operation of a fusion reactor, the temperature of F82H wil
Autor:
Satoshi Fukada, Kazunari Katayama, Hideaki Kashimura, Motoki Shimozori, Shohei Matsuda, Tsuyoshi Hoshino, Masabumi Nishikawa
Publikováno v:
Fusion Engineering and Design. 88:2202-2205
It has been known that water vapor is released from ceramic breeder materials into the purge gas due to desorption of adsorbed water under dry atmosphere and due to the water formation reaction under hydrogen atmosphere. However, an effect of water v
Pebble structure change of Li2TiO3 with excess Li in water vapor atmosphere at elevated temperatures
Autor:
Ryotaro Yamamoto, Motoki Shimozori, Satoshi Fukada, Hiroki Ushida, Kazunari Katayama, Tsuyoshi Hoshino
Publikováno v:
Nuclear Materials and Energy, Vol 9, Iss C, Pp 242-246 (2016)
The pebbles of Li2TiO3 with excess Li, which is in a developmental stage in JAEA (Japan Atomic Energy Agency) as an advanced tritium breeding material, were exposed to water vapor at elevated temperatures. In the temperature rising process from room