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固体氧化物燃料电池连接体材料研究进展 被引量:13

Progress of Interconnect Materials Used for Solid Oxide Fuel Cell
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摘要 固体氧化物燃料电池(SOFC)是高效、洁净、全固态的电化学装置,是发展比较快的能源技术之一。本文总结了SOFC关键组件连接体材料的研究进展,详细论述了近年发展起来的金属连接体材料的研究状况,总结了目前研究比较广泛的Ni基、Fe基、Cr基连接体合金的性能特点和存在的主要问题,最后介绍了经过表面处理的Fe-Cr基合金应作为SOFC金属连接体材料的研究重点。 Solid oxide fuel cell (SOFC) characterized by its efficiency, cleanliness and solid structure was one kind of electrochemical device and one of the fastest developing technologies of the energy source. The progress of interconnect materials as the key part used for solid oxide fuel cell(SOFC)are introduced. This paper especially emphasizes the component, properties and problems of the metallic interconnect materials (Fe-base, Ni-base, Cr-base) used in the SOFC, and the research priorities are also elaborated.
出处 《金属功能材料》 CAS 2008年第6期44-48,共5页 Metallic Functional Materials
关键词 固体氧化物燃料电池(SOFC) Fe-Cr基合金 连接体材料 solid oxide fuel cell (SOFC) Fe-Cr-base alloy interconnect material
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参考文献28

  • 1李瑛,王林山.燃料电池[M].北京:冶金工业出版社,2003.
  • 2Zhu W Z, Deevi S C.[J].Materials Science and Engineering, 2003, A348:227.
  • 3王文,张海鸥,王桂兰.固体氧化物燃料电池连接板材料和制备工艺[J].能源研究与信息,2002,18(3):178-184. 被引量:7
  • 4杨凌波,陈刚,胡克鳌.固体氧化物燃料电池连接材料研究与进展[J].材料导报,2003,17(F09):174-176. 被引量:6
  • 5Fergus J W. [J]. Materials Science and Engineering, 2005, A 397: 271.
  • 6Qu Wei. Interconnect Coatings for Solid Oxide Fuel Celt Applications [M]. University of Calgary, 2004.
  • 7Fergus J W. [J]. Solid State Ionics, 2004, 171: 1.
  • 8Anderson H U, KuoJ H, et al(Ed. )[A], Proceedings of the First International Symposium on Solid Oxide Fuel Cells, PV89-11, The Eieetrochemicai Society Proceedings Series [C]. Pennington, NJ, 1989, 111.
  • 9Yasuda I, Ogiwara T, et al(Eds. ), (SOFC-VII) [A], Proceedings of the Seventh International Symposium on Solid Oxide FueI Ceils [C], Tsukuba, Japan, June,3th-8, 2001, 783.
  • 10刘伟明,李胜利,孙良成,李德辉,敖青.固体氧化物燃料电池铬酸镧连接材料研究现状[J].金属热处理,2002,27(11):8-10. 被引量:10

二级参考文献48

  • 1Yasuda I,Hikita T.Electrial Conductivity and Defect Structure of Cacium-Doped Lanthanum Chromites[J].Journal of Electrochemical Society,1993,140(6):1699-1704.
  • 2Armstrong T R,Stevenson J W,Peder-son L R and Raney P E.Dimensional Instability of Doped Lanthanum Chromite[J].Journal of Electrochemical Society,1996,143(9):2919-2925.
  • 3Flandermeyer B F,Nasrallah M M,Sparlin D M and Anderson H U.Defect Structure of Mg-Doped LaCrO3 Model and Thermogravimetric Measure-ments[J].Journal of the American Ceramic Society,1984,67(3):195-198.
  • 4Boroomand F,Wessel E,Bausinger H and Hilpert K.Correlation Between Defect and Expansion During Reduction of Doped LaCrO3 Interconnects for SOFCs[M].Solid State Ionics,2000,129:251-258.
  • 5Yakabe H,Hishinuma M and Yasuda I.Static and Transient Model Analysis on Expansion of LaCrO3 under an Oxygen Potential Gradient[J].Journal of Electrochemical Society,2000,147(11):4071-4077.
  • 6Simner S,Hardy J,Stevenson J and Armstrong T.Sinter Mechanisms in Strontium Doped Lanthanum Chromite[J].Journal of Materials Science,1999,34:5721-5732.
  • 7Anderson H U.Fabrication and Property Control of LaCrO3 Based Oxides[A].Paulmour Ⅲ H.Davis R F and Hare T M.Processing of Crystalline Ceramics[C].New York:Plenum Press,1978:469-477.
  • 8Sakai N,Kawada T,Yokokawa H,Dokiya M and Kojima I.Liquid-Phase-Assisted Sinter of Calcium-Doped Lanthanum Chromites[J].Journal of the American Ceramic Society,1995,76(3):609-616.
  • 9Meadowcroft D B.Some Properties of Strontium-Doped Lanthanum Chromite[J].J.Phys.D.1969,2(2):1225-1233.
  • 10Sakai N,Kawaka T,Yokokawa H,Dokiya M and Iwata T.Thermal Expansion of Some Chromium Deficient Lanthanum Chromites[J].Solid State Ionics,1990,40/41:394-397.

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