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Fabrication of Metal Supported Solid Oxide Fuel Cells (MS-SOFC) with Ceria and Zirconia Based Electrolytes

机译:金属支撑的固体氧化物燃料电池(MS-SOFC)的制备用二氧化铈和氧化锆基电解质

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Metal supported solid oxide fuel cells (MS-SOFCs) were fabricated using wet ceramic processing technique. Stainless steel 430 L was characterized for porosity and electrical conductivity to be used as the porous support. D.C. polarization and Archimedes method based on ASTM Standard C373-88 were used for conductivity and porosity measurements respectively. As a benchmark, conductivity of metal support was set to be at least equal to that of anode and the porosity was kept between 35-40%. It was observed that physical properties including shrinkage behavior and CTE are two critical parameters to control during the co-sintering of metal support and electrochemical layers. A combination of inert and reducing atmosphere was used during sintering of the cell to prohibit any oxidation of stainless steel. Cell characterization was based on visual observation (primarily cell warping or not) and scanning electron microscopy (SEM).
机译:使用湿陶瓷加工技术制造金属负载的固体氧化物燃料电池(MS-SOFC)。不锈钢430L的特征在于孔隙率和电导率作为多孔载体。 D.C.基于ASTM标准C373-88的偏振和Archimedes方法分别用于电导率和孔隙率测量。作为基准测试,金属载体的电导率设定为至少等于阳极的电导率,并且孔隙率保持在35-40%之间。观察到,包括收缩行为和CTE的物理性质是在金属支撑和电化学层的共烧制期间控制的两个关键参数。在细胞烧结期间使用惰性和还原气氛的组合,以禁止任何不锈钢氧化。细胞表征基于视觉观察(主要是细胞翘曲或不)和扫描电子显微镜(SEM)。

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