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Journal of Ceramic Science and Technology

The Journal of Ceramic Science and Technology publishes original scientific articles on all topics of ceramic science and technology from all ceramic branches. The focus is on the scientific exploration of  the relationships between processing, microstructure and properties of sintered ceramic materials as well as on new processing routes for innovative ceramic materials. The papers may have either theoretical or experimental background. A high quality of publications will be guaranteed by a thorough double blind peer review process.

The Journal is published by Göller Verlag GmbH on behalf of the Deutsche Keramische Gesellschaft (DKG). Edited by Yu-Ping Zeng, Shanghai Institute of Ceramics, Chinese Academy of Sciences, China.

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Preparation of glass-ceramics in the MgO-Al2O3-SiO2 system via low-Temperature combustion synthesis technique

Y. He1, J. M. Guo2, G. W. Zhang1, X. L. Chen1, J. C. Zhang1, Z. L. Huang1, G. Y. Liu1, Q. Cai1

1 School of Science, Honghe University, Mengzi 661100, China
2 Joint Research Centre for International Cross-border Ethnic area Biomass Clean Utilization in Yunnan Province, Yunnan Minzu University, Kunming 650500, China

received January 13, 2015, received in revised form February 12, 2015, accepted March 10, 2015

Vol. 6, No. 3, Pages 201-206   DOI: 10.4416/JCST2015-00004

Abstract

MgO-Al2O3-SiO2 (MAS) glass powders have been successfully synthesized by means of the low-temperature combustion technique using magnesium nitrate, aluminium nitrate and silicic acid as raw materials, and urea as fuel. The sintering behavior, crystallization process and dielectric properties of the MAS were investigated with DCS, XRD, TMA and SEM techniques. The results indicate that the sintering temperature of the as-prepared glass powders decreased with the addition of B2O3 and only α-cordierite was precipitated as a main crystal phase, i.e. without μ-cordierite, for the glass powders heated at 1000 °C. Moreover, the as-prepared α-cordierite exhibited a dense microstructure, the additive (B2O3 2.5 %) reducing the crystallization temperature of α-cordierite phase from 1050 °C to 900 °C. The obtained cordier­ite-based glass-ceramics (sintered at 950 °C and 1000 °C) have a low dielectric constant (4.00 ∼ 4.03 at 1 MHz), a low dielectric dissipation factor (≈ 0.003) and high sintering density (which is up to 98 % of the theoretical density). The properties of as-prepared MAS satisfy all requirements of a material for electronic packaging, making it a promising candidate for application as electronic packaging.

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Keywords

Cordierite-based glass ceramics, low-temperature combustion synthesis, crystallization process, sintering behavior, electronic packaging

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