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平板式中温固体氧化物燃料电池(ITSOFC)的密封材料在工作温度下,与其接触的电池材料应具备以下特性:(1)气密性;(2)尺寸稳定性;(3)热匹配性;(4)化学稳定性;(5)绝缘性.采用SiO2-CaO-B2O3-Al2O3系统微晶玻璃制备出一种适用于850℃的密封材料.该材料在850℃保证一定尺寸的前提下,能够与8YSZ电解质和Ni-Cr双极板紧密黏附,热膨胀系数8.9×10-6)/℃和8YSZ接近,电导率约为10-8S/cm有良好的电绝缘性能,在O2和H2气氛下保温100h没有气体泄漏,且密封后的黏附界面边界分明,元素扩散层厚度<10μm.实验证明该材料适用于ITSOFC 850℃密封.

The sealant materials for planar intermediate temperature solid oxide fuel cells (ITSOFC) are required for
the sealing of the different components to prevent from leakage. Besides the gas tightness, the sealants should show good wetting behavior, matching
thermal expansion, chemical stability, dimension stability and insulation. It was investigated that a glass-ceramic based on the SiO2-CaO-B2O3-Al2O3
system as sealant material applied for ITSOFC operated at 850℃. After heat treatment at 850℃ for 2h, the glass ceramic maintained
its shape, bonded with 8YSZ electrolyte and Ni-Cr bipolar producing a good gas-tight seal, and its thermal expansion coefficient of 8.9×10-6/℃ was close to 8YSZ. After 100h, no decrease in pressure caused by H2 or O2
leaking was observed, its micrograph showed a good connection with clear interface and the thickness of the diffusive layer of elements was less than
5~10μm. This study shows the glass ceramic sealant is suitable for ITSOFC.

参考文献

[1] Williams M C. Sixth International symposium on Solid Oxide Fuel Cells, Hawaii, U.S.A., 1999. 3--9.
[2] Lahl N, Singheiser L, Hilpert K. Sixth International symposium on Solid Oxide Fuel Cells, Hawaii, U.S.A., 1999. 1057--1068.
[3] Wang C, Worrell W L, Park S, et al. Sixth International symposium on Solid Oxide Fuel Cells, Hawaii, U.S.A., 1999. 851--860.
[4] Ghosh D, Tang E, Perry M, et al. Seventh International symposium on Solid Oxide Fuel Cells, Tsukuba, Japan, 2001. 100--110.
[5] Ohara S, Mukai K, Fukui T, et al. Journal of the ceramic society of Japan, 2001, 109 (3): 186--190.
[6] Sakaki Y, Hattori M, Easki Y, et al. Sixth International symposium on Solid Oxide Fuel Cells, Pennington,N.J., 1997. 652--660.
[7] Sohn S B, Choi S Y, Kim G H, et al. Journal of Non-Crystalline solids, 2002, 297: 103--112.
[8] Nguyen Q M, Takehiko T. Science and Technology of Ceramic Fuel Cells. Netherlands: Elsevier Science B.V., 1995. 88--89.
[9] Horita T, Choi J S, Lee Y K, et al. Journal of America Ceramic Society, 1995, 78 (7): 1729--1736.
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