Progress in development of fabrication of small TBMs for EAST and ITER

被引:9
|
作者
Huang, Qunying [1 ,2 ]
Wu, Qingsheng [1 ]
Li, Chunjing [1 ]
Liu, Shaojun [1 ]
Huang, Bo [1 ]
机构
[1] Chinese Acad Sci, Inst Plasma Phys, Hefei 230031, Anhui, Peoples R China
[2] Univ Sci & Technol China, Sch Nucl Sci & Technol, Hefei 230027, Anhui, Peoples R China
关键词
CLAM; Small TBMs; Fabrication techniques; R&D; CONCEPTUAL DESIGN;
D O I
10.1016/j.fusengdes.2010.08.028
中图分类号
TL [原子能技术]; O571 [原子核物理学];
学科分类号
0827 ; 082701 ;
摘要
CLAM steel is one of the RAFMs under development in China. And it is chosen as the primary candidate structural material of the LiPb blankets and DFLL-TBM developed in China. The development and test strategy of DFLL-TBM includes three stages: out-of-pile test, test in EAST and test in ITER. The fabrication techniques of small TBMs for EAST and ITER such as smelting of CLAM steel, the process of the panel for the first wall and Electron Beam Welding method are being studied in detail during recent years. The recent progress of these R&D activities is summarized. (C) 2010 Elsevier B.V. All rights reserved.
引用
收藏
页码:2192 / 2195
页数:4
相关论文
共 50 条
  • [21] Progress in development of ITER diagnostic pressure gauges and status of interfaces with ITER components
    Arkhipov, Alexey
    Mackel, Felix
    Scarabosio, Andrea
    Haas, Guenter
    Koll, Juergen
    Eixenberger, Horst
    Meister, Hans
    Seyvet, Fabien
    Terron, Santiago
    Andrew, Philip
    FUSION ENGINEERING AND DESIGN, 2019, 146 : 1262 - 1266
  • [22] Update in the nuclear responses of the European TBMs for ITER during operation and shutdown
    Juarez, Rafael
    Lopez, Antonio
    Sauvan, Patrick
    Pedroche, Gabriel
    Kolsek, Aljaz
    Alguacil, Javier
    Ugolini, Daniele
    Vallory, Joelle
    Ricapito, Italo
    Poitevin, Yves
    Calvo, F.
    Sanz, Javier
    FUSION ENGINEERING AND DESIGN, 2018, 134 : 92 - 96
  • [23] Progress of ITER
    Aymar, R
    FUSION TECHNOLOGY, 1998, 34 (03): : 291 - 300
  • [24] Progress of ITER
    ITER San Diego Joint Work Site, La Jolla, CA, United States
    Fusion Technology, 1998, 34 (3 pt 2): : 291 - 300
  • [25] Progress in development of edge Thomson scattering system for ITER
    Hatae, T.
    Nakatsuka, M.
    Yoshida, H.
    Ebisawa, K.
    Kusama, Y.
    Sato, K.
    Katsunuma, A.
    Kubomura, H.
    Shinobu, K.
    FUSION SCIENCE AND TECHNOLOGY, 2007, 51 (2T) : 58 - 61
  • [26] Progress in the development of a PIE-PIT for the ITER Tokamak
    Izquierdo, J
    Taylor, NP
    Dies, J
    García, J
    Albajar, F
    FUSION ENGINEERING AND DESIGN, 2005, 75-79 : 1145 - 1149
  • [27] Progress of Design and Development for the ITER Radial Neutron Camera
    B. Esposito
    D. Marocco
    G. Gandolfo
    F. Belli
    L. Bertalot
    J. Blocki
    D. Bocian
    G. Brolatti
    M. Cecconello
    C. Centioli
    R. C. Pereira
    S. Conroy
    F. Crescenzi
    N. Cruz
    L. de Bilbao
    A. Domenicone
    Q. Ducasse
    G. Di Mambro
    D. Dongiovanni
    I. Eletxigerra
    B. Etxeita
    A. Fernandez
    O. Ficker
    P. Gallina
    T. Giacomin
    G. Ginoulhiac
    J. Godlewski
    A. Hjalmarsson
    M. Imrisek
    R. Kantor
    K. Kasprzak
    J. Kotula
    V. Krasilnikov
    M. Lewandowska
    A. Maffucci
    U. Marotta
    D. Marzullo
    G. Mazzitelli
    G. Mazzone
    R. Miklaszewski
    K. Mikszuta-Michalik
    W. Maciocha
    S. Magagnino
    M. Misano
    J. Mlynar
    C. Monti
    F. Moro
    R. Ortwein
    M. Passeri
    T. Pinna
    Journal of Fusion Energy, 2022, 41
  • [28] Progress in the conceptual development of the ITER vertical neutron collimator
    Tsutskikh, AY
    Prosvirin, DV
    Krasil'nikov, AV
    Walker, CI
    INSTRUMENTS AND EXPERIMENTAL TECHNIQUES, 2006, 49 (02) : 174 - 178
  • [29] Progress in the conceptual development of the ITER vertical neutron collimator
    A. Yu. Tsutskikh
    D. V. Prosvirin
    A. V. Krasil’nikov
    C. I. Walker
    Instruments and Experimental Techniques, 2006, 49 : 174 - 178
  • [30] Progress of Design and Development for the ITER Radial Neutron Camera
    Esposito, B.
    Marocco, D.
    Gandolfo, G.
    Belli, F.
    Bertalot, L.
    Blocki, J.
    Bocian, D.
    Brolatti, G.
    Cecconello, M.
    Centioli, C.
    Pereira, R. C.
    Conroy, S.
    Crescenzi, F.
    Cruz, N.
    de Bilbao, L.
    Domenicone, A.
    Ducasse, Q.
    Di Mambro, G.
    Dongiovanni, D.
    Eletxigerra, I
    Etxeita, B.
    Fernandez, A.
    Ficker, O.
    Gallina, P.
    Giacomin, T.
    Ginoulhiac, G.
    Godlewski, J.
    Hjalmarsson, A.
    Imrisek, M.
    Kantor, R.
    Kasprzak, K.
    Kotula, J.
    Krasilnikov, V
    Lewandowska, M.
    Maffucci, A.
    Marotta, U.
    Marzullo, D.
    Mazzitelli, G.
    Mazzone, G.
    Miklaszewski, R.
    Mikszuta-Michalik, K.
    Maciocha, W.
    Magagnino, S.
    Misano, M.
    Mlynar, J.
    Monti, C.
    Moro, F.
    Ortwein, R.
    Passeri, M.
    Pinna, T.
    JOURNAL OF FUSION ENERGY, 2022, 41 (02)