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Journal Articles

Overview on materials R&D activities in Japan towards ITER construction and operation

Takatsu, Hideyuki; Sato, Kazuyoshi; Hamada, Kazuya; Nakahira, Masataka; Suzuki, Satoshi; Nakajima, Hideo; Kuroda, Toshimasa*; Nishitani, Takeo; Shikama, Tatsuo*; Shu, Wataru

Journal of Nuclear Materials, 329-333(1), p.178 - 182, 2004/08

 Times Cited Count:2 Percentile:17.16(Materials Science, Multidisciplinary)

This paper presents an overview on ITER-supporting materials research and development activities and major achievements in Japan during the period from the Co-ordinated Technical Activities to date. In view of the completed engineering design of ITER during the Engineering Design Activities period, research and development efforts since then have been focused: those for reduction of component fabrication cost; those in support of domestic preparations of a structural technical code for construction; those necessary for operation, and been extended to component-level testing rather than pure material testing. They cover materials Research and Development for in-vessel components, vacuum vessel, cryogenic steels of superconducting mgnet and diagnostics components. Major achievements in each research and development area are highlighted and their impact or implication to the design, construction and operation of ITER is presented.

Journal Articles

New cryogenic steels and design approach for ITER superconducting magnet system

Nakajima, Hideo; Hamada, Kazuya; Okuno, Kiyoshi; Hada, Kazuhiko; Tada, Eisuke

Proceedings of 10th International Conference on Nuclear Engineering (ICONE 10) (CD-ROM), 8 Pages, 2002/00

The Japan Atomic Energy Research Institute (JAERI) has conducted to develop a new design code for construction and operation/maintenance of the International Thermonuclear Experimental Reactor (ITER), which will be formed as a code case of ASME B&PV Code Section III, division 4, in collaboration with the ASME international. The new design code will also include the several new techniques and materials developed for each components of ITER. This paper describes the new cryogenic steels used in the magnet system and the design approach with taking account of unique features of the ITER superconducting magnets.

Journal Articles

Development of high strength austenitic stainless steel for conduit of Nb$$_{3}$$Al conductor

Nakajima, Hideo; Nunoya, Yoshihiko; O.Ivano*; Ando, Toshinari; Kawasaki, T.*; Hanawa, Hiromi*; Seki, Shuichi*; Takano, Katsutoshi*; Tsuji, Hiroshi; *; et al.

Advances in Cryogenic Engineering Materials, Vol.42, p.323 - 330, 1996/00

no abstracts in English

Journal Articles

Tensile properties, fracture, and crack growth of a nitrogen strengthened new stainless steel(Fe-25 Cr-15 Ni-0.35 N) for cryogenic use

Nyilas, A.*; Obst, B.*; Nakajima, Hideo

Proceedings of 3rd International Conference on High Nitrogen Steels (HNS-93), p.339 - 344, 1993/00

no abstracts in English

Journal Articles

Development of new cryogenic steels for superconducting magnets of the fusion experimental reactor

Nakajima, Hideo; Yoshida, Kiyoshi; Shimamoto, Susumi

ISIJ International, 30(8), p.567 - 578, 1990/08

 Times Cited Count:49 Percentile:76.6(Metallurgy & Metallurgical Engineering)

no abstracts in English

Journal Articles

Tensile properties of new cryogenic steels as conduit materials of forced flow superconductors at 4K

; ; ; ; ; ; *; *; *; *; et al.

Advances in Cryogenic Engineering Materials, Vol.34, p.173 - 181, 1988/00

no abstracts in English

Oral presentation

Magnetic order and phase transformation in Fe-Mn-C alloy at cryogenic temperature

Morooka, Satoshi; Koyama, Motomichi*; Kawasaki, Takuro; Harjo, S.

no journal, , 

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