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Microstructural evolution in two alkali multicomponent silicate glasses as a result of long-term exposure to solid oxide fuel cell environments

机译:长期暴露于固体氧化物燃料电池环境中,导致两个碱性多组分硅酸盐玻璃的微观结构演变

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摘要

The microstructural evolution in two potential solid oxide fuel cell (SOFC) sealing glass materials exposed to air and a gas mixture of steam + H_2 + N_2 at 800 C up to 10000 h was determined. The glass exposures were performed on common SOFC substrates like alumina and zirconia. Characterization of the crystalline phases and pore size distribution was performed for the specimens with various exposure conditions. Comparison of the microstructural and chemical stability of the two glasses was performed based on known trends related to glass chemistry. It was observed that multicomponent glasses followed few rules for chemical and microstructural stability reported in the literature for glasses with fewer components. The two glasses examined in this study displayed adequate resistance to devitrification but marginal resistance to porosity changes in the SOFC environment exposure. The implications of the results for the design and long-term performance of SOFC seals are discussed.
机译:确定了两种潜在的暴露在空气中的固体氧化物燃料电池(SOFC)密封玻璃材料和蒸汽+ H_2 + N_2在800°C长达10000 h的混合气体中的微观结构演变。在普通的SOFC基材(如氧化铝和氧化锆)上进行玻璃曝光。在各种暴露条件下对样品进行了结晶相和孔径分布的表征。根据与玻璃化学有关的已知趋势,对两种玻璃的微观结构和化学稳定性进行了比较。据观察,多组分玻璃遵循文献中报道的少化学成分的玻璃的化学和微观结构稳定性的规则很少。在这项研究中检查的两块玻璃在SOFC环境暴露中表现出足够的抗失透性,但对孔隙率变化的抗性却很小。讨论了结果对SOFC密封件的设计和长期性能的影响。

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