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Glass and composite seals for the joining of YSZ to metallic interconnect in solid oxide fuel cells

机译:玻璃和复合密封件,用于将YSZ连接到固体氧化物燃料电池中的金属互连件

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摘要

This paper describes the design and development of a composite seal for SOFC to produce a hermetic joint between the ceramic and metallic components of theSOFCstacks. The composite sealwas designed to be chemical compatible with the ceramic electrolyte (YSZ) and the interconnect (AISI 430), to have suitable thermo-mechanical properties (Tg, thermal expansion coefficient, TEC), and good wettability with them. The reinforcing phase (alumina) was chosen to increase the seal viscosity at the SOFC working temperature (about 800 ◦C), to improve the thermal shock resistance of the seal and to match the thermal expansion coefficient of the components to be joined. The seal was morphological and thermo-mechanical characterized by scanning electron microscopy, SEM, energy dispersive spectroscopy, EDS, thermo-mechanical analysis, TMA, X-ray diffraction, XRD and differential thermal analysis, DTA. The joining process between YSZ and AISI 430 was optimized taking into account that the maximum process temperature should be around 1000 ◦C. Joined samples were preliminary submitted to H2-3% H2O atmosphere exposure at 800 ◦C for 200 h
机译:本文介绍了用于SOFC的复合密封件的设计和开发,该复合密封件用于在SOFC堆栈的陶瓷和金属组件之间产生气密接头。复合密封件设计成与陶瓷电解质(YSZ)和互连件(AISI 430)具有化学兼容性,并具有合适的热机械性能(Tg,热膨胀系数,TEC),并具有良好的润湿性。选择增强相(氧化铝)以提高在SOFC工作温度(约800℃)下的密封粘度,以提高密封的抗热震性,并与待连接部件的热膨胀系数匹配。通过扫描电子显微镜,SEM,能量色散谱,EDS,热机械分析,TMA,X射线衍射,XRD和差热分析,DTA对密封件进行了形态学和热机械分析。考虑到最高过程温度应在1000℃左右,YSZ和AISI 430之间的连接过程已得到优化。所加入的样品经过800℃的H2-3%H2O气氛预处理200 h

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