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Journal Articles

Highly thermal conductive sintered SiC fiber-reinforced 3D SiC/SiC composites; Experiments and finite-element analysis of the thermal diffusivity/conductivity

Yamada, Reiji; Igawa, Naoki; Taguchi, Tomitsugu; Jitsukawa, Shiro

Journal of Nuclear Materials, 307-311(Part2), p.1215 - 1220, 2002/12

 Times Cited Count:24 Percentile:80.59(Materials Science, Multidisciplinary)

SiC fiber-reinforced SiC composites (SiC/SiC) are considered an advanced structural material for blanket modules of a fusion reactor, which requires high thermal conductivity in order to keep thermal stresses in the material lower than the allowable design stress. The sintered SiC fiber recently developed has obtained high thermal conductivity, so it is highly expected that sintered SiC fiber-reinforced SiC/SiC composites would also show high thermal conductivity. In this study several types of 3D SiC/SiC composites were fabricated by either CVI or PIP method. The results of the thermal conductivity measurements show that the maximum thermal conductivity at room temperature was about 60 W/mK for CVI composites or 25W/mK for PIP ones. These values are considerably higher than those of non-sintered SiC fiber reinforced SiC/SiC composites, which indicates a possibility that the developed materials would be promising. The FEM thremal analysis shows the good agreement between the caluculated and experimental results.

Journal Articles

Post-irradiation examination of high burnup Mg doped UO$$_{2}$$ in comparison with undoped UO$$_{2}$$, Mg-Nb doped UO$$_{2}$$ and Ti doped UO$$_{2}$$

Fujino, Takeo*; Shiratori, Tetsuo; Sato, Nobuaki*; Fukuda, Kosaku; Yamada, Kota*; Suzuki, Yasufumi; Serizawa, Hiroyuki

Journal of Nuclear Materials, 297(2), p.176 - 205, 2001/08

 Times Cited Count:20 Percentile:79.11(Materials Science, Multidisciplinary)

no abstracts in English

JAEA Reports

High burnup performance of Mg, Mg-Nb and Ti doped UO$$_{2}$$ fuels

Shiratori, Tetsuo; Serizawa, Hiroyuki; Fukuda, Kosaku; Fujino, Takeo*; Sato, Nobuaki*; Yamada, Kota*

JAERI-Research 2000-045, 74 Pages, 2000/09

JAERI-Research-2000-045.pdf:8.19MB

no abstracts in English

Journal Articles

Analysis of high burnup fuel behavior in Halden reactor by FEMAXI-V code

Suzuki, Motoe

Nuclear Engineering and Design, 201(1), p.99 - 106, 2000/09

 Times Cited Count:7 Percentile:46.85(Nuclear Science & Technology)

no abstracts in English

Journal Articles

Analysis of high burnup fuel IFA-519.9 by EXBURN-I code

Suzuki, Motoe; Saito, Hioraki*

HPR-349, 12 Pages, 1998/00

no abstracts in English

JAEA Reports

High power millimeter wave transmission through CVD diamond

Kasugai, Atsushi; Sakamoto, Keishi; Takahashi, Koji; Tsuneoka, Masaki; Imai, Tsuyoshi; O.Braz*; M.Thumm*

JAERI-Research 97-020, 7 Pages, 1997/03

JAERI-Research-97-020.pdf:0.56MB

no abstracts in English

JAEA Reports

Development of high-burnup fuel analysis code EXBURN-I

Suzuki, Motoe; Saito, Hioraki*

JAERI-Data/Code 94-011, 178 Pages, 1994/09

JAERI-Data-Code-94-011.pdf:3.84MB

no abstracts in English

Journal Articles

Performance test of core-bottom insulation structure of VHTR

; ; ;

Nihon Genshiryoku Gakkai-Shi, 27(12), p.1133 - 1135, 1985/00

 Times Cited Count:1 Percentile:24.15(Nuclear Science & Technology)

no abstracts in English

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