欢迎登录材料期刊网

材料期刊网

高级检索

聚变能作为一种潜在的替代能源,可以为将来提供清洁和无穷尽的能源供给,引起中国政府的高度重视。一项国家大科学工程“超导托卡马克HT-7U的建造”目前正在中国科学院合肥等离子体物理研究所实施。考虑到HT-7U将运行在高热负荷和近稳态的工作条件下,研究和选取面对等离子体候选材料就显得极为重要。中国科学院山西煤炭化学研究所和合肥等离子体物理研究所合作致力于HT-7U用炭基面对等离子体材料的研究和开发。本文主要介绍了聚变能的优点,有关聚变研究的一些基本概念如托卡马克,等离子体,面对等离子体材料,壁材料和等离子体间的相互作用行为等。给出了HT-7U用炭基面对等离子体材料的主要结果。相关的具体研究结果将在后续文章中给予报道。

参考文献

[1] Xiwen Deng .Fusion research activities in China[J].Fusion Engineering and Design,1998,39-40(01):99-108.
[2] Wu CH.;Mszanowski U. .A COMPARISON OF LIFETIMES OF BERYLLIUM, CARBON, MOLYBDENUM AND TUNGSTEN AS DIVERTOR ARMOUR MATERIALS[J].Journal of Nuclear Materials: Materials Aspects of Fission and Fusion,1995(3):293-301.
[3] Philipps V;Pospieszczyk A;Unterberg B et al.Behavior of Boron- and titanium doped graphite limiters under high heat loads in TEXTOR[J].Journal of Nuclear Materials,1994,212:1189-1194.
[4] Jimbou R;Saidoh M;Nakamura K et al.New composite composed of boron carbide and carbon fiber with high thermal conductivity for first wall[J].Journal of Nuclear Materials,1996,233-237:781-786.
[5] Parker P;Janeschitz G;Pacher D et al.Plasma-wall interaction in ITER[J].Journal of Nuclear Materials,1997,241-243(01):1-26.
[6] Federici G.;Haasz AA.;Janeschitz G.;Noda N.;Philipps V. Roth J.;Skinner CH.;Tivey R.;Wu CH.;Coad JP. .Critical plasma-wall interaction issues for plasma-facing materials and components in near-term fusion devices[J].Journal of Nuclear Materials: Materials Aspects of Fission and Fusion,2000(Pt.A):110-119.
[7] Barabash V;Akiba M;Mazul I et al.Selection development and characterisation of plasma facing materials for ITER[J].Journal of Nuclear Materials,1996,233-237:718-723.
[8] Meservey E B;Arunasalam V;Barnes C et al.The effects of plasma surface Interactions on PLT plasma parameters[J].Journal of Nuclear Materials,1980,93-94(01):267.
[9] Jackson GL.;Holtrop KL.;Konoshima S.;Maingi R.;Staebler GM. West WP.;Baker DR. .EFFECTS OF PARTICLE FUELING AND PLASMA WALL INTERACTIONS ON DIII-D DISCHARGES[J].Journal of Nuclear Materials: Materials Aspects of Fission and Fusion,1995(0):173-177.
[10] Joachim Roth .Chemical erosion of carbon based materials in fusion devices[J].Journal of Nuclear Materials: Materials Aspects of Fission and Fusion,1999(0):51-57.
[11] G. Federici;R. A. Anderl;P. Andrew;J. N. Brooks;R. A. Causey;J. P. Coad;D. Cowgill;R. P. Doerner;A. A. Haasz;G. Janeschitz;W. Jacob;G. R. Longhurst;R. Nygren;A. Peacock;M. A. Pick;V. Philipps;J. Roth;C. H. Skinner;W. R. Wampler .In-vessel tritium retention and removal in ITER[J].Journal of Nuclear Materials: Materials Aspects of Fission and Fusion,1999(0):14-29.
[12] Burtseva T.;Mazul I.;Garciarosales C.;Deschka S.;Behrisch R.;Herrmann A.;Barabash V. .PERFORMANCE OF THE TI DOPED GRAPHITE RG-TI-91 AT THE DIVERTOR OF THE TOKAMAK ASDEX UPGRADE[J].Journal of Nuclear Materials: Materials Aspects of Fission and Fusion,1997(0):716-721.
[13] Hino T.;Yamashina T. .DEVELOPMENTS OF HIGH HEAT FLUX COMPONENTS AND PLASMA SURFACE INTERACTION STUDIES IN JAPAN[J].Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology,1996(6):939-941.
[14] Ting J M;Lake M L .High heat flux composites for plasma-facing materials[J].Journal of Nuclear Materials,1994,212:1141-1145.
[15] Bowers D A;Sapp J W .Carbon-based materials thermal development testing and selection process for first wall and divertor applications[J].Journal of Nuclear Materials,1992,191-194(01):305-308.
[16] Junling Chen .Development of carbon/ceramic composites and coatings as plasma facing materials of the HT-7U superconducting Tokamak device Chinese Academy of Sciences[D].Hefei:Institute of Plasma Physics,2000.
[17] Guo QG.;Zhai GT.;Liu L.;Song JR.;Zhang LF.;He YX.;Chen JL.;Li JG. .The primary results for the mixed carbon material used for high flux steady-state tokamak operation in China[J].Journal of Nuclear Materials: Materials Aspects of Fission and Fusion,2001(0):191-195.
[18] Zhang G J;Guo Q G;Liu Zh J.Effects of doapnts on basic properties and microstructure of doped graphite in press[J].Journal of Nuclear Materials
[19] GuoQG;Song J R;Liu L et al.Oxidation protection of graphite by SiC coating and B4C additives internal modifications[J].Carbon,1999,37(01):149-152.
[20] GuoQG;Liu L;Song J R et al.Preparation and properties of the composites characterized by the functionally gradient SiC coatings and graphite substrates[J].Journal of Plasma and Fusion Research Series,2000,3(01):233-237.
[21] GuoQuangui;Song jinre;Liu Lang et al.Oxidation resistance of B4C-SiC/C composites with self-healing properties at high temperatures I:Isothermal oxidation behavior of the composites[J].New Carbon Materials(China),1998,13(01):2-6.
[22] GuoQuangui;Song Jinren;Liu Lang et al.Oxidation resistance of B4C-SiC/C composites with self-healing properties at high temperatures II:Relationship between oxidation resistance and structure variation of the composites during oxidation[J].New Carbon Materials(China),1998,13(02):5-10.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%