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首页> 外文期刊>Journal of power sources >Long-term evaluation of solid oxide fuel cell candidate materials in a 3-cell generic stack test fixture, part Ⅲ: Stability and microstructure of Ce-(Mn,Co)-spinel coating, AISI441 interconnect, alumina coating, cathode and anode
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Long-term evaluation of solid oxide fuel cell candidate materials in a 3-cell generic stack test fixture, part Ⅲ: Stability and microstructure of Ce-(Mn,Co)-spinel coating, AISI441 interconnect, alumina coating, cathode and anode

机译:在3单元通用堆测试夹具中对固体氧化物燃料电池候选材料的长期评估,第三部分:Ce-(Mn,Co)-尖晶石涂层,AISI441互连,氧化铝涂层,阴极和阳极的稳定性和微观结构

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摘要

A generic solid oxide fuel cell stack test fixture was developed to evaluate candidate materials and processing under realistic conditions. Part Ⅲ of the work investigated the stability of Ce-(Mn,Co) spinel coating, AlSI441 metallic interconnect, alumina coating, and cell's degradation. After 6000 h test, the spinel coating showed densification with some diffusion of Cr. At the metal interface, segregation of Si and Ti was observed, however, no continuous layer formed. The alumina coating for perimeter sealing areas appeared more dense and thick at the air side than the fuel side. Both the spinel and alumina coatings remained bonded. EDS analysis of Cr within the metal showed small decrease in concentration near the coating interface and would expect to cause no issue of Cr depletion. Inter-diffusion of Ni, Fe, and Cr between spot-welded Ni wire and AISI441 interconnect was observed and Cr-oxide scale formed along the circumference of the weld. The microstructure of the anode and cathode was discussed relating to degradation of the top and middle cells. Overall, the Ce-(Mn,Co) spinel coating, alumina coating, and AISI441 steel showed the desired long-term stability and the developed generic stack fixture proved to be a useful tool to validate candidate materials for SOFC.
机译:开发了通用的固体氧化物燃料电池堆测试夹具,以评估实际条件下的候选材料和工艺。研究的第三部分研究了Ce-(Mn,Co)尖晶石涂层,AlSI441金属互连,氧化铝涂层的稳定性以及电池的降解。经过6000小时的测试后,尖晶石涂层表现出致密化,并带有一定的Cr扩散。在金属界面处,观察到Si和Ti的偏析,但是没有形成连续的层。用于周边密封区域的氧化铝涂层在空气侧比燃料侧更致密,更厚。尖晶石和氧化铝涂层均保持粘结。对金属中的Cr进行的EDS分析表明,涂层界面附近的浓度几乎没有下降,并且预计不会引起Cr耗尽的问题。观察到镍,铁和铬在点焊镍丝和AISI441互连件之间的相互扩散,并且在焊缝周围形成了氧化铬垢。讨论了阳极和阴极的微观结构,涉及顶部电池和中间电池的降解。总体而言,Ce-(Mn,Co)尖晶石涂层,氧化铝涂层和AISI441钢表现出所需的长期稳定性,并且开发的通用堆叠夹具被证明是验证SOFC候选材料的有用工具。

著录项

  • 来源
    《Journal of power sources》 |2014年第1期|444-453|共10页
  • 作者单位

    K2-44, Energy and Efficiency Division, Pacific Northwest National Laboratory, P.O. Box 999, Richland, WA 99354, USA;

    K2-44, Energy and Efficiency Division, Pacific Northwest National Laboratory, P.O.Box 999, Richland, WA 99354, USA;

    K2-44, Energy and Efficiency Division, Pacific Northwest National Laboratory, P.O. Box 999, Richland, WA 99354, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Sealing glass; AISI441; Aluminization; (Mn.Co)-spinel; SOFC;

    机译:密封玻璃;AISI441;渗铝(Mn.Co)-尖晶石;SOFC;

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