Yu Yongsheng, Wang Jinghan, Yu Yuanyuan, Yan Zhaoli, Du Yanyan, Chu Pengfei, Jing Qiangshan, Liu Peng
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.
Materials (Basel). 2022 Dec 8;15(24):8758. doi: 10.3390/ma15248758.
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).
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)。