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Effects of Y 2O 3 on structure and dielectric properties of aluminoborosilicate glasses

机译:Y 2 O 3 铝丙二硅硅酸盐玻璃的结构和介电性能

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摘要

Aluminoborosilicate glasses with different contents of Y2O3were prepared by the conventional melt-annealing method. Fourier-transform infrared spectroscopy (FT-IR), differential thermal analysis (DTA) and impedance instrument were used to investigate structure, thermal and dielectric properties of glass samples. The infrared spectrum analysis showed that the structure of aluminoborosilicate glasses became compact firstly and then loss with the increase of Y2O3. Oxygen molar volume (VO) and molar volume (Vm) of the glass samples reached the minimum with 2?mol% Y2O3addition, which indicated this sample had the more compact and dense glass network structure. The glass transition temperature (Tg), onset glass crystallization temperature (Tc) and crystallization peak temperature (Tp) had an upward trend with the addition of Y2O3. When Y2O3content was 2.0?mol%, the maximum value of Dietzel's thermal stability (?T) and the Saad parameter (S) were 161?°C and 15.58?°C respectively. This meant that the thermal stability was enhanced by adding Y2O3, and the sample contained 2.0?mol% Y2O3had excellent thermal stability. The dielectric constant decreased to the minimum value (4.7) with the addition of 1.5?mol% Y2O3, and the dielectric loss met the minimum (3.8?×?10?4) when the content of Y2O3reached 2.0?mol%.
机译:用常规熔体退火方法制备具有不同含量的Y2O3的铝硅酸盐玻璃。傅里叶变换红外光谱(FT-IR),差分热分析(DTA)和阻抗仪用于研究玻璃样品的结构,热和介电性能。红外光谱分析表明,铝硼硅酸盐玻璃的结构首先变得紧凑,然后随着Y2O3的增加而丧失。玻璃样品的氧摩尔体积(VO)和摩尔体积(VM)达到最低2〜摩尔%的Y2O3加法,这表明该样品具有更紧凑和致密的玻璃网络结构。玻璃化转变温度(Tg),起始玻璃结晶温度(Tc)和结晶峰值温度(Tp)随着Y2O3的添加具有向上趋势。当Y2O3Content为2.0摩尔%时,饮食热稳定性(ΔT)和Saad参数分别的最大值分别为161°C和15.58Ω°C。这意味着通过加入Y 2 O 3来提高热稳定性,并且样品含有2.0摩尔%Y2O3 HAL优异的热稳定性。加入1.5摩尔%Y2O3的介电常数减小到最小值(4.7),并且当Y2O3静学2.0摩尔%的含量时,介电损耗达到最小(3.8?×10〜4)。

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