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用于LTCC基板的凝灰岩单相α-堇青石微晶玻璃的合成与表征

Synthesis and Characterization of Single-Phase α-Cordierite Glass-Ceramics for LTCC Substrates from Tuff.

作者信息

Yu Yongsheng, Wang Jinghan, Yu Yuanyuan, Yan Zhaoli, Du Yanyan, Chu Pengfei, Jing Qiangshan, Liu Peng

机构信息

Henan Province Key Laboratory of Utilization of Non-Metallic Mineral in the South of Henan, College of Chemistry and Chemical Engineering, Xinyang Normal University, Xinyang 464000, China.

出版信息

Materials (Basel). 2022 Dec 8;15(24):8758. doi: 10.3390/ma15248758.

Abstract

Single-phase α-cordierite glass-ceramics for a low-temperature co-fired ceramic (LTCC) substrate were fabricated from tuff as the main raw material, using the non-stoichiometric formula of α-cordierite with excess MgO without adding any sintering additives. The sintering/crystallization behavior and the various performances of dielectric properties, thermal expansion, and flexural strength of the glass-ceramics were detected. The results indicated that only single-phase α-cordierite crystal was precipitated from the basic glass sintered at the range 875-950 °C, and μ-cordierite crystal was not observed during the whole sintering-crystallization process. The properties of glass-ceramics were first improved and then deteriorated with the increase in tuff content and sintering temperature. Fortunately, the glass-ceramics sintered at 900 °C with 45 wt.% tuff content possessed excellent properties: high densify (2.62 g∙cm), applicable flexural strength (136 MPa), low dielectric loss (0.010, at 10 MHz), low dielectric constant (5.12, at 10 MHz, close to α-cordierite), and suitable coefficients of thermal expansion (CTE, 3.89 × 10 K).

摘要

以凝灰岩为主要原料,采用含过量MgO的α-堇青石非化学计量配方,不添加任何烧结添加剂,制备了用于低温共烧陶瓷(LTCC)基板的单相α-堇青石微晶玻璃。检测了微晶玻璃的烧结/结晶行为以及介电性能、热膨胀和抗弯强度等各项性能。结果表明,在875-950℃范围内烧结的基础玻璃中仅析出单相α-堇青石晶体,在整个烧结-结晶过程中未观察到μ-堇青石晶体。随着凝灰岩含量和烧结温度的升高,微晶玻璃的性能先改善后恶化。幸运的是,在900℃下烧结且凝灰岩含量为45 wt.%的微晶玻璃具有优异的性能:高密度(2.62 g∙cm)、适用的抗弯强度(136 MPa)、低介电损耗(10 MHz时为0.010)、低介电常数(10 MHz时为5.12,接近α-堇青石)以及合适的热膨胀系数(CTE,3.89×10 K)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f822/9783509/73123f4d8a77/materials-15-08758-g001.jpg

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