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Taguchi, Tomitsugu; Nozawa, Takashi*; Igawa, Naoki; Kato, Yutai*; Jitsukawa, Shiro; Koyama, Akira*; Hinoki, Tatsuya*; Snead, L. L.*
Journal of Nuclear Materials, 329-333(Part1), p.572 - 576, 2004/08
Times Cited Count:46 Percentile:92.89(Materials Science, Multidisciplinary)The SiC/SiC composite with SiC/C multi-layer interphase coated on advanced SiC fibers was fabricated by the forced thermal-gradient chemical vapor infiltration (F-CVI) process for improvement in mechanical properties. The SEM and TEM observation verified that SiC/C multi-layer interphase was formed on SiC fibers. The both flexural and tensile strengths of SiC/SiC composite with SiC/C multi-layer interphase were approximately 10 % higher than that with single carbon interphase. The SEM observation on the fracture surface of the composite with SiC/C multi-layer reveals that cylindrical steps around the fiber were formed. The several crack deflections occurred within SiC/C multi-layer interphase. The SiC/C multi-layer applied in this study operated efficiently to improve the mechanical properties.
Nagai, Haruyasu
Journal of Applied Meteorology, 42(3), p.434 - 451, 2003/03
This paper describes the improvement of an atmosphere-soil-vegetation model and the validation of the new model by observation. In the previous performance test using measured data, some limitations were revealed in the schemes for the canopy radiation transmission and the stomatal resistance calculation, and are improved in this study. By these improvements, the observed albedo and latent heat flux are simulated more properly than before. Results of comparisons between calculations and observations for a winter wheat field and a grassland indicate that the predictability and applicability are improved by the introduction of the new schemes.
Sato, Tatsuhiko; Fujii, Katsutoshi; Murayama, Takashi; Sakamoto, Yukio; Yamaguchi, Yasuhiro; Sato, Yukio*; Soma, Nobuyuki*; Fujisaki, Noboru*; Hara, Satoshi*; Aikawa, Yukio*; et al.
JAERI-Tech 2002-028, 20 Pages, 2002/03
Tokyo Fire Department developed an armored car against radiation accidents. Dose attenuation factors of the radiation shields had been determined by a simple estimation, and a more precise evaluation was required. By request from Tokyo Fire Department, a precise evaluation of the dose attenuation factor was carried out. The evaluation was done by a Monte Carlo radiation transport simulation code MCNP4B. Benchmark experiments using neutron and gamma ray sources were also performed for ensuring the evaluation method. As a result, it was found out that doses of neutron and gamma ray were attenuated to approximately 10% and 25% by the thickest shield, respectively. These values were close to the ones which had already obtained by the simple estimation.
V.Nelyubin*; *; *; B.Wojtsekhowski*
Nuclear Instruments and Methods in Physics Research A, 425(1-2), p.65 - 74, 1999/00
Times Cited Count:3 Percentile:33.25(Instruments & Instrumentation)no abstracts in English
Shibanuma, Kiyoshi
JAERI-M 93-064, 119 Pages, 1993/03
no abstracts in English
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JAERI-M 83-078, 34 Pages, 1983/06
no abstracts in English
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Journal of Nuclear Science and Technology, 3(9), p.393 - 400, 1966/00
Times Cited Count:21no abstracts in English