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C276合金的抗辐照性能研究 被引量:4

Study on Anti-irradiation Performance of C276 Alloy
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摘要 C276合金为包壳部件的候选材料之一,本文拟对其抗辐照性能进行研究。对C276合金进行质子及多束粒子辐照,利用纳米硬度仪、透射电镜、拉曼成像仪等研究了C276合金在辐照前后的试样。结果表明:在质子及多束粒子辐照下,辐照损伤区域发生C偏析和位错环硬化;在H或He单束辐照条件下,在35.0μm或3.5μm深度处,拉曼光谱中的碳峰相对强度较大且碳峰红移,引起此处的纳米硬度较其他深度处的高;试验得到的损伤峰对应的深度与模拟计算得到的吻合。可推知,C276合金在质子及多束粒子下的辐照硬化是辐照偏析及可能的位错环硬化综合作用的结果。 The anti-irradiation performance of C276 alloy which is one of candidate materials for the fuel cladding was studied .The samples of C276 alloy were irradiated by multiple ion beams with H , He and Si ions and the test samples before and after irradiation were studied with nano-hardness instrument , transmission electron microscope and Raman imaging instrument .T he results show that under the multi-beam ion irradiation ,C segregation and dislocation loop hardening occur in irradiation damage region;under the single ion beam irradiation with either H or He , the depth corresponding to the peak of nano-hardness and intensity of carbon peak in Raman spectra is 3.5 μm for He and 35.0 μm for H ,and the carbon peak red-shift takes place , about which the test results agree well with the simulation calculation results .It can be concluded that irradiation-induced hardening of C276 alloy arises from co-effects of irradiation-induced segregation and possible dislocation loop hardening .
出处 《原子能科学技术》 EI CAS CSCD 北大核心 2014年第3期412-415,共4页 Atomic Energy Science and Technology
基金 973计划资助项目(2007CB209803) 中央高校基本科研业务费专项资金资助项目(JB2012096)
关键词 C276 辐照硬化 辐照偏析 抗辐照性能 C276 irradiation-induced hardening irradiation-induced segregation antiirradiation performance
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  • 1ROGER S P,GERVASIO D F,PAYER J H.Oxygen electro-reduction on C22 and C276 nickel metal allov[C]//Critieal Factors in Localized Corrosion:A Sympo-siam in Honor of Dr.Hugh S.Isaacs,Cancun,Mexico:[s.n].2006:431-442.
  • 2LLOYD A C,SHOESMITH D W,MCINTYRE N S.et al.Effects of temperature and potential on the Pas-sive corrosion properties of alloys C22 and C276[J].Joernal of the Electrechemicai Society,2003,150(4):B120-B130.
  • 3LO Nigro R,MALANDRINO G,FRAGALA I L.Metal-organic chemical vapor deposition of CeO2(100)oriented films on no-rolled hastelloy C276[J].Chemis-try of Materials,2001,13(12):4402-4404.
  • 4PARK J H,CHEN L.GORETTA K C,K C.et al Oxi-dation of hastelloy C276[J].Advances in Cryogenic En.gIneering,2002.48l 495-502.
  • 5LIOYD Amy C,NOEL James J,MCINTYRE Stew-art,et al.Cr,Mo and W alloying additions in Ni and their effect on passivity[J].Electrochimica Acta,2004,49(17/18):3015-3027.
  • 6VAN Der Fijk Casper,FOSTERVOLL Hans.SAL-LOM Zuhair K,et al.Plasma welding of NiTi to Ni-Ti,stainless steel and hastelloy C276[C]//Joining of Advanced and Specialty MaterialsⅥ.Pittsburgh,PA,United States:[s.n.],2004:125-129.
  • 7SOMMER Brandi J,BARYCKI Joseph J.SIMPSON Melanie A,Characterization of human UDP-glUCOsede hydrogenase:Cys-276 is required for the second of two successive oxidations[J].The Journal of Biological Chemistry,2004.279(22):23590-23596.
  • 8ROY Ajit K,KORIPELLI Rama S,PAL Joydeep.Tensile deformation of a nickel-base superallov for aP-plication in hydrogen generation[J].International Journal of Hydrogen Energy,2008,33(3):945-952.
  • 9RODRIGUEZ R,HAYES R W,BERBON P B,et al.Tensile and creep behavior of cryomilled Inco 625[J].Aeta Materialia,2003,51(4):9 -929.
  • 10曾乐,<现代焊接技术手册>,上海科学技术出版社,1992年.

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  • 1马雁,陆道纲,毛雪平,张立殷,蔡军.C-276合金650℃下持久抗力的显微分析[J].稀有金属材料与工程,2010,39(9):1571-1574. 被引量:9
  • 2蒋文春,巩建鸣,陈虎,涂善东.哈氏合金C276管道焊接残余应力与变形的有限元分析[J].化工机械,2006,33(2):99-102. 被引量:5
  • 3BAI X, VOTER A F, HOAGLAND R G, et al. Efficient annealing of radiation damage near grain boundaries via interstitial emission[J]. Science, 2010, 327: 1 631-1 634.
  • 4KOCH C C. Nanostructured materials: Process ing, properties, and applications[M]. Canada: William Andrew, Inc., 2007: 565.
  • 5MOHAMED W M F. Influence of fast neutron irradiation on mechanical properties and micro- structure of nanocrystalline copper [D]. North Carolina: North Carolina State University, 2012.
  • 6MATSUOKA H, YAMASAKI T, ZHENG Y J, et al. Microstructure and mechanical proper- ties of neutron-irradiated ultra-fine-grained SUS316L stainless steels and electrodeposited nanocrystalline Ni and Ni-W alloys[J]. Materials Science and Engineering A, 2007, 449-451: 790-793. 266.
  • 7CHIMI Y, IWASE A, ISHIKAWA N, et al. Accumulation and recovery of defects in ion-irra- diated nanocrystalline gold[J]. Journal of Nucle- ar Materials, 2001, 297(3): 355-357.
  • 8SHARMA G, SARKAR A, VARSHNEY J, et al. Effect of irradiation on the microstructure and mechanical behavior of nanoerystalline nickel[J]. Scripta Materialia, 2011, 65(8): 727-730.
  • 9SHARMA G, MUKHERJEE P, CHATTER- JEE A, et al. Study of the effect of a irradiation on the microstructure and mechanical properties of nanocrystalline Ni[J]. Acta Materialia, 2013, 61(9): 3 257-3.
  • 10NITA N, Impact of SCHAEUBLIN R irradiation nanocrystalline materi Materials, 2004, 329 on th als[J]. 333 : 9 , VICTORIA M. microstructure of Journal of Nuclear 3-957.

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