DocumentCode
300960
Title
Welding and cutting characteristics of blanket/first wall module to back plate for fusion experimental reactor
Author
Kuroda, T. ; Furuya, K. ; Sato, Seiki ; Kurasawa, T. ; Hatano, T. ; Togami, I. ; Takatsu, H. ; Osaki, T. ; Koga, S. ; Sato, Seiki
Author_Institution
JAERI, Ibaraki, Japan
Volume
1
fYear
1995
fDate
30 Sep-5 Oct 1995
Firstpage
341
Abstract
A modular blanket/first wall has been proposed for a fusion experimental reactor, e.g. International Thermonuclear Experimental Reactor (ITER), with support ribs connecting to a strong back plate. For the connection method, a welding approach has been investigated. Welding and cutting tests of the support ribs have been performed with three types of test specimens; flat plate (200 mm×400 mm), partial model (700 mm×200 mm), and full-box model (600 mm×1000 mm×430 mm). The support ribs were made of type 316L austenitic stainless steel with the thickness of 50 mm in all these tests. The welding method applied to these tests was narrow gap TIG, and water jet for cutting. Through these tests, engineering data including optimum welding conditions, welding distortion, and welding/cutting speeds have been obtained. Transverse shrinkage was about 10 mm for the welding of 50 mm thick rib. However, the difference in distortion at the first wall surface was within 1-2 mm. Therefore, the blanket/first wall module can be installed with quite a high accuracy by taking into account the module moving to the back plate during the welding
Keywords
Tokamak devices; austenitic stainless steel; cutting; fusion reactor blankets; fusion reactor materials; fusion reactors; welding; ITER; International Thermonuclear Experimental Reactor; back plate; blanket/first wall module; cutting characteristics; fusion experimental reactor; narrow gap TIG; water jet; welding; welding distortion; Data engineering; Elementary particle vacuum; Inductors; Neutrons; Ribs; Steel; Testing; Vacuum systems; Water jet cutting; Welding;
fLanguage
English
Publisher
ieee
Conference_Titel
Fusion Engineering, 1995. SOFE '95. Seeking a New Energy Era., 16th IEEE/NPSS Symposium
Conference_Location
Champaign, IL
Print_ISBN
0-7803-2969-4
Type
conf
DOI
10.1109/FUSION.1995.534237
Filename
534237
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