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Matsuda, Shohei; Yokoyama, Keiichi; Yaita, Tsuyoshi; Kobayashi, Toru; Kaneta, Yui; Simonnet, M.; Sekiguchi, Tetsuhiro; Honda, Mitsunori; Shimojo, Kojiro; Doi, Reisuke; et al.
Science Advances (Internet), 8(20), p.eabn1991_1 - eabn1991_11, 2022/05
Times Cited Count:8 Percentile:45.26(Multidisciplinary Sciences)no abstracts in English
Chiba, Atsuya; Uno, Sadanori; Okoshi, Kiyonori; Yamada, Keisuke; Saito, Yuichi; Ishii, Yasuyuki; Sakai, Takuro; Sato, Takahiro; Mizuhashi, Kiyoshi
JAEA-Review 2005-001, TIARA Annual Report 2004, p.358 - 360, 2006/01
no abstracts in English
Teshigawara, Makoto; Harada, Masahide; Saito, Shigeru; Kikuchi, Kenji; Kogawa, Hiroyuki; Ikeda, Yujiro; Kawai, Masayoshi*; Kurishita, Hiroaki*; Konashi, Kenji*
Journal of Nuclear Materials, 343(1-3), p.154 - 162, 2005/08
Times Cited Count:10 Percentile:55.76(Materials Science, Multidisciplinary)For decoupled and poisoned moderator, a thermal neutron absorber, i.e., decoupler, is located around the moderator to give neutron beam with a short decay time. A B4C decoupler is already utilized, however, it is difficult to use in a MW class source because of He void swelling and local heating by (n,a) reaction. Therefore, a Ag-In-Cd (AIC) alloy which gives energy-dependence of macroscopic neutron cross section like that of BC was chosen. However, from heat removal and corrosion protection points of view, AIC is needed to bond between an Al alloy (A6061-T6), which is the structural material of a moderator. An AIC plate is divided into a Ag-In (15wt%) and Ag-Cd (35wt%) plate to extend the life time, shorten by burn up of Cd. We performed bonding tests by HIP (Hot Isostatic Pressing). We found out that a better HIP condition was holding at 803 K, 100 MPa for 1 h for small test pieces (f20mm). Though a hardened layer is found in the bonding layer, the rupture strength of the bonding layer is more than 20 MPa, which is less than that of the design stress.
; ; ; ; ; ; ; Muto, Suguru*; Osa, Akihiko; Koizumi, Mitsuo; et al.
Hyperfine Interactions, 120-121(1-4), p.695 - 699, 1999/00
no abstracts in English
Koizumi, Mitsuo; Osa, Akihiko; Sekine, Toshiaki;
Nuclear Instruments and Methods in Physics Research B, 126(1-4), p.100 - 104, 1997/00
Times Cited Count:8 Percentile:56.33(Instruments & Instrumentation)no abstracts in English
Okubo, Makio
Physical Review C, 53(3), p.1325 - 1335, 1996/03
Times Cited Count:6 Percentile:37.69(Physics, Nuclear)no abstracts in English
Okajima, Shigeaki; Oigawa, Hiroyuki; Ando, Masaki; Mukaiyama, Takehiko
Proc. of 9th Int. Symp. on Reactor Dosimetry, 0, p.172 - 179, 1996/00
no abstracts in English
Kato, Toshio*; Ogata, Yoshimune*; Harada, Hideo*; ; Sekine, Toshiaki;
Global 1995,Int. Conf. on Evaluation of Emerging Nuclear Fuel Cycle Systems, 2, p.1552 - 1559, 1995/00
no abstracts in English
B.P.Kochurov*
JAERI-Review 94-002, 161 Pages, 1994/08
no abstracts in English
Kikuchi, Yasuyuki;
JAERI-M 85-101, 195 Pages, 1985/07
no abstracts in English
Kikuchi, Yasuyuki;
Journal of Nuclear Science and Technology, 22(5), p.337 - 357, 1985/00
Times Cited Count:5 Percentile:59.41(Nuclear Science & Technology)no abstracts in English
Arakawa, Kazuo; Seguchi, Tadao;
Shitsuryo Bunseki, 29(3), p.257 - 265, 1981/00
no abstracts in English
;
Journal of Inorganic and Nuclear Chemistry, 40(12), p.1977 - 1980, 1978/00
Times Cited Count:7no abstracts in English
Kunieda, Satoshi
no journal, ,
Evaluated proton-induced cross-sections are required for lithium to design the neutron-source of BNCT. In this study, Coulomb and interference term are introduced into R-matrix code to calculate charged-particle elastic-scattering cross-sections. The experimental cross-sections, such as differential cross-sections of elastic-scattering and neutron production are analyzed/evaluated simultaneously for Li up to about 10 MeV. The results obtained will be included in the high-energy nuclear data library JENDL/4.0H.