Download e-book for kindle: Advances in Solid Oxide Fuel Cells and Electronic Ceramics by Mihails Kusnezoff, Narottam P. Bansal, Kiyoshi Shimamura

By Mihails Kusnezoff, Narottam P. Bansal, Kiyoshi Shimamura

ISBN-10: 1119320208

ISBN-13: 9781119320203

ISBN-10: 1119320224

ISBN-13: 9781119320227

This factor includes thirteen papers from the yank Ceramic Society’s fortieth overseas convention on complex Ceramics and Composites, held in Daytona seashore, Florida, January 24-29, 2016 provided in Symposium three - thirteenth foreign Symposium on strong Oxide gas Cells: fabrics, technological know-how, and expertise and Symposium 14 – unmarried Crystalline fabrics for electric, Optical, and scientific Applications.

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Additional resources for Advances in Solid Oxide Fuel Cells and Electronic Ceramics II: Ceramic Engineering and Science Proceedings Volume 37, Issue 3

Sample text

Table II shows the recipe used for the anode tape casting. Figure 2. SEM images of upper (a) and fracture surface (b) of pure GDC10 samples sintered at 1550°C for 3 h. Table I. Composition of the suspension used for tape casting (electrolyte). 5 Table II. Composition of the suspension used for tape casting (anode). 5 Figure 3 shows the effect of sintering aid on the shrinkage upon heating of GDC10. There is an evident effect on the sintering onset temperature, this decreasing from about 1100°C for pure GDC10 to less than 700°C when 2 mol% Li2O is added.

Lin, C. K. Liu, and S. H. Wu, High-temperature mechanical properties of a solid oxide fuel cell glass sealant in sintered forms, J. Power Sources, 196(7), 3583-91 (2011). 25 C. K. Lin, K. L. Lin, J. H. Yeh, W. H. Shiu, C. K. Liu, and R. Y. Lee, Aging effects on high-temperature creep properties of a solid oxide fuel cell glass-ceramic sealant, J. Power Sources, 241(1), 12-9 (2013). 26 C. K. Lin, K. L. Lin, J. H. Yeh, S. H. Wu, and R. Y. Lee, Creep rupture of the joint of a solid oxide fuel cell glass-ceramic sealant with metallic interconnect, J.

Commonly used SOFC interconnects can be classified into metallic and ceramic interconnects. Metallic interconnects have a more stable conductivity, and are cheaper to fabricate compared to ceramic SOFC interconnects, however they are not commonly used because metallic interconnect degradation rate is too high at the required operation temperature (600°C -800°C) [4, 5]. Previous literature shows that TiC/TiN cermets based interconnects showed promising results for SOFC interconnects, these material show good electrical and mechanical properties, compatible TEC, and good oxidation resistance [6, 7].

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Advances in Solid Oxide Fuel Cells and Electronic Ceramics II: Ceramic Engineering and Science Proceedings Volume 37, Issue 3 by Mihails Kusnezoff, Narottam P. Bansal, Kiyoshi Shimamura


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