Effects of M2+ (M = Ca, Sr, and Ba) Addition on Crystallization and Microstructure of SiO2-MgO-Al2O3-B2O3-K2O-F Glass

Mrinmoy Garai, N. Sasmal, B. Karmakar
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引用次数: 15

Abstract

In understanding the effect of K+ substitution by M2+ (M = Ca, Sr, and Ba) on crystallization and microstructural properties of boroaluminosilicate glass system, the SiO2-MgO-Al2O3-B2O3-MgF2-K2O-Li2O-AlPO4 glasses were prepared by single-step melt-quenching at 1500°C. Density of base glass (2.64 g·cm−3) is found to be decreased in presence of CaO and SrO. is increased by 5–10°C and decreased by 13–20°C on addition of M2+. The variation of , and decrease of thermal expansion (CTE) from 7.55 to 6.67–6.97 (×10−6/K, at 50–500°C) in substituting K+ by M2+ are attributed to the higher field-strength of Ca2+, Sr2+, and Ba2+. Opaque mica glass-ceramics were derived from the transparent boroaluminosilicate glasses by controlled heat treatment at 1050°C (duration = 4 h); and the predominant crystalline phase was identified as fluorophlogopite (KMg3AlSi3O10F2) by XRD and FTIR study. Glass-ceramic microstructure reveals that the platelike mica flake crystals predominate in presence of K2O and CaO but restructured to smaller droplet like spherical shaped mica on addition of SrO and BaO. Wide range of CTE values (9.54–13.38 × 10−6/K at 50–800°C) are obtained for such glass-ceramics. Having higher CTE value after crystallization, the CaO containing SiO2-MgO-Al2O3-B2O3-MgF2-K2O-Li2O-AlPO4 glass can be useful as SOFC sealing material.
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M2+ (M = Ca, Sr和Ba)添加对SiO2-MgO-Al2O3-B2O3-K2O-F玻璃结晶和微观结构的影响
为了解M2+ (M = Ca、Sr和Ba)取代K+对硼铝硅酸盐玻璃体系结晶和微观结构性能的影响,采用1500℃单步熔淬法制备了sio2 - mgo - al2o3 - b2o3 - mgf2 - k20 - li20 - alpo4玻璃。发现CaO和SrO的存在降低了基玻璃的密度(2.64 g·cm−3)。添加M2+后,温度升高5 ~ 10℃,降低13 ~ 20℃。M2+取代K+时,Ca2+、Sr2+和Ba2+的场强增大,导致热膨胀系数(CTE)从7.55降至6.67 ~ 6.97 (×10−6/K, 50 ~ 500℃)。以透明硼铝硅酸盐玻璃为原料,在1050℃(持续时间= 4 h)下进行热处理,得到不透明云母微晶玻璃;XRD和FTIR分析鉴定其主要晶相为氟云母(KMg3AlSi3O10F2)。微晶玻璃微观结构表明,在K2O和CaO的存在下,云母片状晶体以片状为主,而在SrO和BaO的加入下,云母片状晶体重构为更小的球状云母。这种玻璃陶瓷的CTE值范围很广(50-800°C时为9.54-13.38 × 10−6/K)。含SiO2-MgO-Al2O3-B2O3-MgF2-K2O-Li2O-AlPO4玻璃结晶后CTE值较高,可作为SOFC密封材料。
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