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Optimum processing parameters to improve sealing performance in solid oxide fuel cells

机译:最佳工艺参数可改善固体氧化物燃料电池的密封性能

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Glass ceramic composites are among the favorable candidates as a sealing material for solid oxide fuel cells (SOFC). In order to obtain a reliable, robust and hermetic sealing, the glass ceramics must chemically bond to both the metallic interconnector and the ceramic electrolyte. A high-bonding strength and good wetting, which strongly depend on the thermal treatment, are always preferred to ensure gas-tight sealing. The thermal treatment involves three stages: binder burnout (stage-I), sintering (stage-II), and cooling (stage-III). This study investigates effects of various parameters on the sealing quality at the sintering stage. The effects of sintering temperature, clamping pressure and sealant thickness are considered. The glass ceramic laminates are produced employing a tape casting method. The sealing quality is evaluated by measuring leakage and final macro-structure of the sealing region. It is suggested that a 900-930 degrees C sintering temperature and 1.5-7.6 N cm(-2) clamping pressure ranges are better for successful sealing. The initial thickness of glass ceramic laminates is also desired to be between 0.25-0.5 mm thickness range for both a cost-effective and reliable sealing. (C) 2015 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:玻璃陶瓷复合材料作为固体氧化物燃料电池(SOFC)的密封材料是理想的候选材料。为了获得可靠,坚固和气密的密封,玻璃陶瓷必须化学结合到金属互连器和陶瓷电解质上。高粘合强度和良好的润湿性(很大程度上取决于热处理)始终是确保气密密封的首选。热处理涉及三个阶段:粘合剂烧尽(阶段I),烧结(阶段II)和冷却(阶段III)。本研究研究了烧结阶段各种参数对密封质量的影响。考虑了烧结温度,夹持压力和密封胶厚度的影响。所述玻璃陶瓷层压板采用流延法生产。通过测量泄漏和密封区域的最终宏观结构来评估密封质量。建议900-930摄氏度的烧结温度和1.5-7.6 N cm(-2)的夹紧压力范围对于成功密封是更好的。为了成本有效和可靠的密封,玻璃陶瓷层压板的初始厚度也期望在0.25-0.5mm的厚度范围内。 (C)2015 Elsevier Ltd和Techna Group S.r.l.版权所有。

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