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Chemical interaction between glass-ceramic sealants and interconnect steels in SOFC stacks

机译:SOFC堆中玻璃陶瓷密封胶和互连钢之间的化学相互作用

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In order to gain insight into the mechanism causing performance degradation and/or failure, stacks of planar solid oxide fuel cells (SOFC) are routinely dismantled and examined after operation at Forschungszentrum Jiilich. The post-operation inspection focuses in particular on the chemical and mechanical compatibility aspects of cell and stack materials. In the present work a short-term degradation effect is addressed, which was found to be caused by unwanted chemical interactions between glass-ceramic sealants and ferritic steel interconnects. The post-operation inspection revealed severe steel corrosion along the seal rims. Under SOFC stack conditions rapidly growing oxide nodules were observed bridging the 200 μm seal gap between the metallic components after a few hundred hours of operation. These oxide nodules, rich in iron, gave rise to local short-circuiting effects eventually resulting in stack failure. The present study, combined with recent model investigations triggered by the stack results, indicates that severe degradation only occurs in the case of glass-ceramic sealants which contain minor amounts of PbO. Furthermore, the rate of corrosion attack of the metallic components strongly depends on the silicon (Si) content of the ferritic steel. The stack tests suggest that increasing the Si content increases the corrosion rate, and thus detrimentally influences the stack performance.
机译:为了深入了解导致性能下降和/或失效的机理,在吉尔吉施Forchungszentrum Jiilich运行后,例行拆卸并检查了平面固体氧化物燃料电池(SOFC)的堆。术后检查尤其集中在电池和电池堆材料的化学和机械相容性方面。在当前工作中,解决了短期降解效应,这是由于玻璃陶瓷密封胶和铁素体钢互连之间不希望的化学相互作用引起的。术后检查表明,密封圈沿边有严重的钢腐蚀。在SOFC堆条件下,观察到快速生长的氧化物结核在操作数百小时后弥合了金属部件之间的200μm密封间隙。这些富含铁的氧化物球会引起局部短路效应,最终导致电池堆故障。本研究与由堆堆结果触发的最新模型研究相结合,表明仅在含有少量PbO的玻璃陶瓷密封胶的情况下才会发生严重降解。此外,金属成分的腐蚀速率在很大程度上取决于铁素体钢中硅(Si)的含量。堆测试表明,增加Si含量会增加腐蚀速率,从而对堆性能产生不利影响。

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