論文- 長谷川 晃 -
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件数:264件
[2020]
1.Laminated composites using potassium doped tungsten.[Fusion Engineering and Design,161,(2020),111894-]Nogami, S., Hazama, T., Noto, H., Nagasaka, T., Hasegawa, A.
2.Fatigue properties of ferritic/martensitic steel after neutron irradiation and helium implantation.[Nuclear Materials and Energy,24,(2020),100764-]Nogami, S., Hasegawa, A., Yamazaki, M.
3.Tungsten modified by potassium doping and rhenium addition for fusion reactor applications.[Fusion Engineering and Design,152,(2020)]Shuhei Nogami, Akira Hasegawa, Makoto Fukuda, Shotaro Watanabe, Jens Reiser, Michael Rieth
10.1016/j.fusengdes.2019.111445
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4.Thermal shock behavior of potassium doped and rhenium added tungsten alloys.[Physcica Scripta,T171,(2020),014020-]Nogami, S., Pintsuk, G., Matsui, K., Watanabe, S., Wirtz, M., Loewenhoff, T., Hasegawa, A.
5.Tungsten as a Plasma-Facing Material.[Comprehensive Nuclear Materials, 2nd edition,6,(2020),19-53]Pintsuk Gerald. and Hasegawa Akira.
10.1016/B978-0-12-803581-8.11696-0
6.Helium effects on recovery and recrystallization of powder metallurgically processed tungsten.[Physcica Scripta,T171,(2020),014016-]Hasegawa, A., Miyazawa, T., Itou, D., Hattori, T., Yohida, K., Nogami, S.
7.Mechanical properties of tungsten: Recent research on modified tungsten materials in Japan.[Journal of Nuclear Materials,(2020)]Shuhei Nogami, Akira Hasegawa, Makoto Fukuda, Michael Rieth, Jens Reiser, Gerald Pintsuk
8.Irradiation Damages of Structural Materials under Different Irradiation Environments.[Journal of Nuclear Materials,(2020)]Eiichi Wakai, Shigeru Takaya, Yoshinori Matsui, Yuji Nagae, Tomoaki Suzudo, Masataka Yamaguchi, Tetsuya Hirade, Kazumi Aoto, Shuhei Nogami, Akira Hasegawa, Hiroaki Abe, Koichi Sato, Taku Ishida, Shunsuke Makimura, Patrick G. Hurh, Kavin Ammigan, David J. Senor, Andrew M. Casella, Danny J. Edwards
[2019]
9.Tensile and impact properties of tungsten-rhenium alloy for plasma-facing components in fusion reactor.[Fusion Engineering and Design,148,(2019)]Shotaro Watanabe, Shuhei Nogami, Jens Reiser, Michael Rieth, Sven Sickinger, Siegfried Baumgärtner, Takeshi Miyazawa, Akira Hasegawa
10.1016/j.fusengdes.2019.111323
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10.PHENIX U.S.-Japan Collaboration Investigation of Thermal and Mechanical Properties of Thermal Neutron–Shielded Irradiated Tungsten.[Fusion Science and Technology,75(6),(2019),499-509]Lauren M. Garrison, Yutai Katoh, Josina W. Geringer, Masafumi Akiyoshi, Xiang Chen, Makoto Fukuda, Akira Hasegawa, Tatsuya Hinoki, Xunxiang Hu, Takaaki Koyanagi, Eric Lang, Michael McAlister, Joel McDuffee, Takeshi Miyazawa, Chad Parish, Emily Proehl, Nathan Reid, Janet Robertson, Hsin Wang
10.1080/15361055.2019.1602390
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11.Response of unalloyed tungsten to mixed spectrum neutrons.[Journal of Nuclear Materials,520(520),(2019),193-207]Y. Katoh, L. L. Snead, L. M. Garrison, X. Hu, T. Koyanagi, C. M. Parish, P. D. Edmondson, M. Fukuda, T. Hwang, T. Tanaka, A. Hasegawa
10.1016/j.jnucmat.2019.03.045
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12.Behavior of tungsten under irradiation and plasma interaction.[Journal of Nuclear Materials,519,(2019),334-368]Michael Rieth, Russell Doerner Akira Hasegawa, Yohio Ueda, Mariu Wirtz
13.Improvement of impact properties of tungsten by potassium doping.[Fusion Engineering and Design,140,(2019),48-61]Shuhei Nogami, Shotaro Watanabe, Jens Reiser, Michael Rieth, Sven Sickinger, Akira Hasegawa
14.Neutron irradiation effects on the mechanical properties of powder metallurgical processed tungsten alloys.[Journal of Nuclear Materials,(2019)]Takeshi Miyazawa, Lauren M. Garrison, Josina W. Geringer, Makoto Fukuda, Yutai Katoh, Tatsuya Hinoki, Akira Hasegawa
10.1016/j.jnucmat.2019.151910
http://www.scopus.com/inward/record.url?eid=85075893381&partnerID=40
15.Helium effects on recovery and recrystallization of powder metallurgically processed tungsten.[Physica Scripta,(2019)]Akira Hasegawa, Takeshi Miyazawa, Daichi Ito, Takaya Hattori, Kenta Yoshida, Shuhei Nogami
16.Thermal shock behavior of potassium doped and rhenium added tungsten alloys.[Physica Scripta,(2019)]Shuehi Nogami, Gerald Pintsuk, Kento Matsui, Shotaro Watanabe, Marius Wirtz, Thorsten Loewenhoff, Akira Hasegawa
[2018]
17.Japanese activities of the R%D on silicon carbide composites in the broader approach period and beyond.[Journal of Nuclear Materials,511,(2018),582-590]Takashi Nozawa, Kazumi Ozawa, ChangHo Park, Joon-Soo Park, Akira Kohyama, Akira Hasegawa, Shuhei Nogai, Tatsuya Hinoki, Sosuke Kondo, Toyohiko Yano, Tamaki Shibayama, Bun Tshuchiya, Tatsuo Shikama, Shinji Nagata, Teruya Tanaka, Hirotomo Iwakiri, Yasushi Yamamoto, Satoshi Konishi, Hiroyasu Tanigawa
18.Japanese activities of the R&D on silicon carbide composites in the broader approach period and beyond.[Journal of Nuclear Materials,511,(2018),582-590]Takashi Nozawa, Kazumi Ozawa, Chang Ho Park, Joon Soo Park, Akira Kohyama, Akira Hasegawa, Shuhei Nogami, Tatsuya Hinoki, Sosuke Kondo, Toyohiko Yano, Tamaki Shibayama, Bun Tsuchiya, Tatsuo Shikama, Shinji Nagata, Teruya Tanaka, Hirotomo Iwakiri, Yasushi Yamamoto, Satoshi Konishi, Ryuta Kasada, Masatoshi Kondo, Tomoaki Kunugi, Takehiko Yokomine, Yoshitaka Ueki, Nariaki Okubo, Tomitsugu Taguchi, Hiroyasu Tanigawa
10.1016/j.jnucmat.2018.05.045
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19.A review of impact properties of tyngsten materials.[Fusion Engineering and Design,135(A),(2018),196-203]Shuhei Nogami, Shotaro Watanabe, Jens Reiser, Michael Rieth, Sven Sickinger, Akira Hasegawa
10.1016/j.fusengdes.2018.08.001
20.First-principles study of solvent-solute mixed dumbbells in body-centered-cubic tungsten crystals.[Journal of Nuclear Materials,505,(2018),15-21]Tomoaki Suzudo, Tomohito Tsuru, Akira Hasegawa
10.1016/j.jnucmat.2018.03.052
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