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高温气冷堆石墨堆内构件温度应力有限元分析

The finite element analysis of the graphite internals in the high-temperature gas-cooled reactors
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摘要 高温气体冷却石墨堆内构件温度应力的分布及大小对材料性能、使用寿命有重大影响。采用ANSYS有限元分析方法表征样品石墨砖在高温气冷堆运行状态下,平面温度及应力强度分布和大小情况。分析结果表明,样品石墨满足材料性能、使用寿命要求。 In the field of high -temperatare gas- cooled reactors, the material property and life of graphite internals was affected by the distribution and size of temperature stress. The finite element analysis was used to characterize the temperature and stress distribution and size of the sample graphite in the operation of high- temperature gas- cooled reactors. The analysis results show that the sample graphite satisfies the material property and life.
作者 赵木
出处 《炭素技术》 CAS CSCD 2010年第2期25-27,共3页 Carbon Techniques
基金 大型先进压水堆及高温气冷堆核电站重大专项(2008ZX06905-002)
关键词 高温气冷堆 石墨 有限元分析 High- temperature gas- cooled reactor graphite finite element analysis
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  • 1[1]H.Zaidi,F.Robert,D.Paulmier.Influence of Adsorbed Gases on the Surface Energy of Graphite:Consequence on the Friction Behavior[J].Thin Solid Films,1995,264:46~51.
  • 2[2]F.Robert,D.Paulmier,H.Zaidi.Combined Influence of an Inert Gas Environment and a Mechanical Action on a Graphite Surface[J].Wear,1995,181-183:687~690.
  • 3[3]H.Zaidi,F.Robert,D.Paulmier et al.Correlation Bettwen the Tribological Behaviour of Graphite and its Mechanical Properties Versus the Interplan Distance[J].Applied Surface Sinence,1993,70/71:103~108.
  • 4[4]Y.Iwasa,Ahmet F A,Rabinowicz E R et al.Cryotribology of Diamond and Graphite[J].Cryogenics,1997,37:801~805.
  • 5[5]A.P.Semenov.Tribology at High Temperature[J].Tribology International,1995,28:45~50.
  • 6Blanchard A. Appendix 2: The Thermal Oxidation of Graphite, Irradiation Damage in Graphite due to Fast Neutrons in Fission and Fusion Systems[R]. IAEA, Vienna, IAEA-TECDOC-1154, 2000.
  • 7Velasquez C, Hightower G, Bumette R. The Oxidation of H-451 Graphite by Steam, Part h Reaction Kinetics [R]. GA-A14951, General Atmotics, 1978.
  • 8Katscher W, Moorman R. Graphite Corrosion under Severe HTR Accident Condition [C]. IAEA Specialists' Meeting on Graphite Component Structural Design, JAERI Tokai (Japan), 1986, IWGGCR- 11: 182-188.
  • 9O'Brien M H, Merrill B J, Ygaki S N. Combustion Testing and Thermal Modeling of Proposed CIT Graphite Tile Materials [P]. EGG-FSP-8255, 1988.
  • 10Robin J C. Graphite Oxidation in High Temperature Reactors-Experimental Program[R]. CEA/DER/STR/LECP, 2002.

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