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Crystallization Kinetics of a Solid Oxide Fuel Cell Seal Glass by Differential Thermal Analysis

机译:固体氧化物燃料电池密封玻璃的差热分析结晶动力学

摘要

Crystallization kinetics of a barium calcium aluminosilicate glass (BCAS), a sealant material for planar solid oxide fuel cells, have been investigated by differential thermal analysis (DTA). From variation of DTA peak maximum temperature with heating rate, the activation energy for glass crystallization was calculated to be 259 kJ/mol. Development of crystalline phases on thermal treatments of the glass at various temperatures has been followed by powder x-ray diffraction. Microstructure and chemical composition of the crystalline phases were investigated by scanning electron microscopy and energy dispersive spectroscopic (EDS) analysis. BaSiO3 and hexacelsian (BaAl2Si2O8) were the primary crystalline phases whereas monoclinic celsian (BaAl2Si2O8) and (Ba(x), Ca(y))SiO4 were also detected as minor phases. Needle-shaped BaSiO3 crystals are formed first, followed by the formation of other phases at longer times of heat treatments. The glass does not fully crystallize even after long term heat treatments at 750 to 900 C.
机译:已通过差热分析(​​DTA)研究了钡钙铝硅酸盐玻璃(BCAS)(一种用于平面固体氧化物燃料电池的密封材料)的结晶动力学。从DTA峰值最高温度随加热速率的变化,计算出玻璃结晶的活化能为259kJ / mol。在各种温度下对玻璃进行热处理后,结晶相的发展随后是粉末X射线衍射。通过扫描电子显微镜和能量色散光谱(EDS)分析研究了结晶相的微观结构和化学组成。 BaSiO3和六硅藻土(BaAl2Si2O8)是主要的晶相,而单斜晶硅质(BaAl2Si2O8)和(Ba(x),Ca(y))SiO4也被检测为次要相。首先形成针状BaSiO3晶体,然后在较长时间的热处理中形成其他相。即使在750至900 C的温度下进行长期热处理,玻璃也不会完全结晶。

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