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Determining the Quality Factor of Dielectric Ceramic Mixtures with Dielectric Constants in the Microwave Frequency Range

机译:用微波频率范围内的介电常数确定介电陶瓷混合物的品质因数

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摘要

Microwave dielectric ceramic materials are extensively utilized in microwave applications because of their high dielectric constants and quality factors. These applications also require ceramics of zero temperature coefficients at the resonant frequency (τ f), which can be realized through mixing a ceramic that one is interested in with another ceramic with −τ f, or by performing the ionic substitution. With the mixing/ionic substitution, it is indispensable to compute the quality factors precisely. Previous study indicates that the quality factor depends on the grain size, porosity, internal strain, structure, phase evolution, and conductivity etc. Here we derive a quality factor formula based on the definition, which works very well for multiphase composites, single phase solid solutions, and equivalent ionic substituted single phase materials. Our formula calculation and fits to the previous experimental results demonstrate that the quality factor of the ceramic mixtures strongly depend on the dielectric constants and the dielectric constant variation index. Our results suggest that the impacts from grain size, porosity, and internal strain etc. can be summarized to the dielectric constant or dielectric constant variation index, which is of great importance for future design of high performance microwave dielectric ceramics.
机译:微波介电陶瓷材料因其高介电常数和品质因数而广泛用于微波应用。这些应用还需要在谐振频率(τf)处温度系数为零的陶瓷,这可以通过将一个感兴趣的陶瓷与另一个具有-τf的陶瓷混合,或者通过进行离子取代来实现。通过混合/离子取代,精确计算质量因子必不可少。先前的研究表明,品质因数取决于晶粒尺寸,孔隙率,内部应变,结构,相演化和电导率等。在此,我们根据定义得出品质因数公式,该公式非常适用于多相复合材料,单相固体溶液和等效的离子取代单相材料。我们的公式计算和对先前实验结果的拟合表明,陶瓷混合物的品质因数很大程度上取决于介电常数和介电常数变化指数。我们的结果表明,来自晶粒尺寸,孔隙率和内部应变等的影响可以归纳为介电常数或介电常数变化指数,这对于高性能微波介电陶瓷的未来设计具有重要意义。

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