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首页> 外文期刊>Journal of Ceramic Science and Technology >Preparation of glass-ceramics in the MgO-Al2O3-SiO2 system via low-Temperature combustion synthesis technique
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Preparation of glass-ceramics in the MgO-Al2O3-SiO2 system via low-Temperature combustion synthesis technique

机译:低温燃烧合成技术在MgO-Al2O3-SiO2体系中制备玻璃陶瓷

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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 alpha-cordierite was precipitated as a main crystal phase, i.e. without p-cordierite, for the glass powders heated at 1000 degrees C. Moreover, the as-prepared oc-cordierite exhibited a dense microstructure, the additive (B2O3 2.5 %) reducing the crystallization temperature of cc-cordierite phase from 1050 degrees C to 900 degrees C. The obtained cordierite-based glass-ceramics (sintered at 950 degrees C and 1000 degrees 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.
机译:以硝酸镁,硝酸铝和硅酸为原料,以尿素为燃料,通过低温燃烧技术成功合成了MgO-Al2O3-SiO2(MAS)玻璃粉。用DCS,XRD,TMA和SEM技术研究了MAS的烧结行为,结晶过程和介电性能。结果表明,对于在1000℃加热的玻璃粉末,随着添加B 2 O 3,所制备的玻璃粉末的烧结温度降低,并且仅沉淀出α-堇青石作为主晶相,即没有p-堇青石。 ,制备的α-堇青石呈现出致密的微观结构,添加剂(B 2 O 3 2.5%)将cc-堇青石相的结晶温度从1050℃降低到900℃。获得的堇青石基玻璃陶瓷(在950℃烧结)。 C和1000摄氏度)具有较低的介电常数(在1 MHz时为4.00-4.03),较低的介电损耗因子(= 0.003)和较高的烧结密度(最高可达理论密度的98%)。制备的MAS的性能满足电子包装材料的所有要求,使其成为电子包装应用的有希望的候选者。

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