石英玻璃在微波范围内的温度和频率依赖性研究

V. Krylov
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引用次数: 0

摘要

在微波器件中使用玻璃需要研究材料的介电特性。本文给出了石英玻璃介电特性在微波波段的温度和频率依赖关系的研究结果。在常温下,采用高精度谐振腔固定频率器件,在8 ~ 26 GHz范围内测定了介质介电常数和介质损耗正切的频率依赖性。在加热至1200℃时,铂包覆石英玻璃谐振腔具有较低的热膨胀系数和不显著的本征参数变化。考虑石英玻璃的结构特性,利用经典的传导机制,得到了介电常数和介电损耗正切与实验温度和频率的关系。对石英玻璃微波区离子电导率的影响进行了评价。所揭示的介电常数温度依赖性的变化不超过测量误差。所得结果可用于石英玻璃在无线电工程器件中的实际应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of temperature and frequency dependences of quartz glass in the microwave range
The use of glass in microwave devices requires study of the dielectric properties of the material. We present the results of studying temperature and frequency dependences of the dielectric properties of quartz glass in the microwave region. The frequency dependence of the dielectric permittivity and dielectric loss tangent were determined using high-precision devices based on resonant cavity at a fixed frequency within a range of 8 – 26 GHz under a normal temperature. The temperature dependence was obtained using resonant cavity made of platinum coated quartz glass with a low thermal-expansion coefficient and insignificant change of intrinsic parameters under heating up to 1200°C. Experimental temperature and frequency dependences of the dielectric permittivity and dielectric loss tangent were obtained using classical conduction mechanisms taking into account the structural peculiarities of quartz glass. The effect of ionic conductivity was also evaluated in quartz glass in the microwave region. The revealed changes in the temperature dependence of the permittivity do not exceed the measurement error. The results obtained can be used for practical application of quartz glass in radio-engineering devices.
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