Progress in development and qualification of beryllium for ITER blanket first wall application in Russian Federation

被引:5
作者
Kupriyanov, I. B. [1 ]
Nikolaev, G. N. [1 ]
Gorayev, G. [2 ]
机构
[1] AA Bochvar High Technol Res Inst Inorgan Mat JSC, Moscow, Russia
[2] FSUE Bazalt, Saratov, Russia
关键词
ITER; First wall; Beryllium; Qualification; Technical requirements; Manufacturing technology;
D O I
10.1016/j.fusengdes.2017.05.071
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
Progress of R&D activities on the development and improvement of manufacturing technology of the billets and tiles made of TGP-56FW beryllium is traced and also some actions aimed on the preparation of mass production is reported. Additionally, the results of comparative study are presented on influence of transient plasma heat loads with the energy density of 0.3-1.0 MJ/m(2) at 250-500 degrees C (performed in QSPA-Be plasma gun facility), on the erosion and surface damage of beryllium tiles made of TGP-56FW grade (RF) and S-65C grade (USA). (C) 2017 Elsevier B.V. All rights reserved.
引用
收藏
页码:1004 / 1010
页数:7
相关论文
共 11 条
[1]  
[Anonymous], 2008, ITER REPORT
[2]   Summary of beryllium qualification activity for ITER first-wall applications [J].
Barabash, V. ;
Eaton, R. ;
Hirai, T. ;
Kupriyanov, I. ;
Nikolaev, G. ;
Wang, Zhanhong ;
Liu, Xiang ;
Roedig, M. ;
Linke, J. .
PHYSICA SCRIPTA, 2011, T145
[3]  
ITER Materials Assessment Report (MAR), 2001, ITER MAT ASSESSMENT
[4]   First experiments at the QSPA-Be plasma gun facility [J].
Kovalenko, D. V. ;
Klimov, N. S. ;
Podkovyrov, V. L. ;
Muzichenko, A. D. ;
Zhitlukhin, A. M. ;
Khimchenko, L. N. ;
Kupriyanov, I. B. ;
Giniyatulin, R. N. .
PHYSICA SCRIPTA, 2011, T145
[5]   Recent results on high thermal energy load testing of beryllium for ITER first wall application [J].
Kupriyanov, I. B. ;
Roedig, M. ;
Nikolaev, G. N. ;
Kurbatova, L. A. ;
Linke, J. ;
Gervash, A. A. ;
Giniyatulin, R. N. ;
Podkovyrov, V. L. ;
Muzichenko, A. D. ;
Khimchenko, L. .
PHYSICA SCRIPTA, 2011, T145
[6]   Status of RF beryllium characterization for ITER Fist Wall [J].
Kupriyanov, I. B. ;
Nikolaev, G. N. ;
Roedig, M. ;
Gervash, A. A. ;
Linke, I. J. ;
Kurbatova, L. A. ;
Perevalov, S. I. ;
Giniyatulin, R. N. .
JOURNAL OF NUCLEAR MATERIALS, 2011, 417 (1-3) :756-760
[7]   Transient heat loads in current fusion experiments, extrapolation to ITER and consequences for its operation [J].
Loarte, A. ;
Saibene, G. ;
Sartori, R. ;
Riccardo, V. ;
Andrew, P. ;
Paley, J. ;
Fundamenski, W. ;
Eich, T. ;
Herrmann, A. ;
Pautasso, G. ;
Kirk, A. ;
Counsell, G. ;
Federici, G. ;
Strohmayer, G. ;
Whyte, D. ;
Leonard, A. ;
Pitts, R. A. ;
Landman, I. ;
Bazylev, B. ;
Pestchanyi, S. .
PHYSICA SCRIPTA, 2007, T128 :222-228
[8]   Russian development of enhanced heat flux technologies for ITER first wall [J].
Mazul, I. ;
Alekseev, A. ;
Belyakov, V. ;
Bondarchuk, D. ;
Eaton, R. ;
Escourbiac, F. ;
Gervash, A. ;
Glazunov, D. ;
Kuznetsov, V. ;
Merola, M. ;
Labusov, A. ;
Ovchinnikov, I. ;
Raffray, R. ;
Rulev, R. .
FUSION ENGINEERING AND DESIGN, 2012, 87 (5-6) :437-442
[9]  
Rodig M., 1995, P 2 IEA INT WORKSH B, P39
[10]   Simulation of transient heat loads on high heat flux materials and components [J].
Roedig, M. ;
Kupriyanov, I. ;
Linke, J. ;
Liu, X. ;
Wang, Zh. .
JOURNAL OF NUCLEAR MATERIALS, 2011, 417 (1-3) :761-764