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Synthesis and characteristics of borosilicate-based glass-ceramics with different SiO2 and Na2O contents

机译:SiO2和Na2O含量不同的硼硅酸盐基玻璃陶瓷的合成及性能

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Our present work was initiated with the aim of optimizing the borosilicate-based glass-ceramics composites by adjusting SiO2 and Na2O composition in CaO-Al2O3-B2O3-SiO2 (CABS) glass slightly. To illustrate the functional mechanism of glass network former (SiO2) and the glass network amender (Na2O), we focused on the multiple performances of the composites by employing different qualitative and quantitative instruments. Results showed that decreasing SiO2 content or increasing Na2O content appropriately both could promote sintering densification, accelerate the formation of anorthite phases and lower the dielectric loss. CABS glass/Al2O3 composite with 54 wt% SiO2 content and 1 wt% Na2O content being sintered at 850 degrees C for 15 min exhibited the best properties. In addition, after co-firing with Ag electrodes, glass/Al2O3 composite could meet the shrinkage requirement of Ag electrodes and could not possibly react with Ag electrodes at 850 degrees C. Based on the above findings, the borosilicate-based glass/Al2O3 composites we have studied can be suitable for LTCC application. (C) 2015 Elsevier B.V. All rights reserved.
机译:我们目前的工作旨在通过稍微调整CaO-Al2O3-B2O3-SiO2(CABS)玻璃中的SiO2和Na2O组成来优化基于硼硅酸盐的玻璃陶瓷复合材料。为了说明玻璃网络形成剂(SiO2)和玻璃网络改性剂(Na2O)的功能机理,我们通过使用不同的定性和定量手段,重点研究了复合材料的多种性能。结果表明,适当降低SiO2含量或增加Na2O含量均可促进烧结致密化,加速钙长石相的形成并降低介电损耗。 SiO2含量为54%(重量)和Na2O含量为1%(重量)的CABS玻璃/ Al2O3复合材料在850摄氏度下烧结15分钟,表现出最好的性能。另外,在与Ag电极共烧后,玻璃/ Al2O3复合材料可以满足Ag电极的收缩要求,并且在850℃下不可能与Ag电极反应。基于以上发现,硼硅酸盐基玻璃/ Al2O3复合材料我们研究过可以适合LTCC的应用。 (C)2015 Elsevier B.V.保留所有权利。

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