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Low-Temperature Sintering and Microwave Dielectric Properties of Zn2SiO4 Ceramic Added with CrystallinenZinc Borate

机译:硼酸锌硼酸锌陶瓷的低温烧结及微波介电性能

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摘要

The physical and dielectric properties of composites of known microwave materials, Zn2SiO4 and Zn3B2O6, prepared by solid-state reaction, were investigated with the purpose of developing a low-loss dielectric material for low-temperature co-fired ceramic applications. An off-stoichiometric phase of Zn2SiO4 with extra SiO2 was used to avoid the occurrence of unreacted ZnO. During sintering, zinc borate was found to partially react with residual SiO2 to form Zn2SiO4. The residual zinc borate was converted to a boron-rich glassy phase which helped to reduce the sintering temperature of the composite. Good relative sintering density (>90%) at temperatures below the melting temperature of zinc borate is indicative of a sintering mechanism of diffusion-based mass transfer. Composites containing 15 wt.% zinc borate, 2.5 wt.% lithium carbonate and 20 wt.% zinc borate in zinc silicate had dielectric constants of 6.8 and 6.1, quality factors (Q×f) of 48,800 and 94,300 GHz when sintered at 900°C and 950°C, respectively. These quality factor results are close to the best values reported for zinc silicate at these sintering temperatures.
机译:研究了通过固相反应制备的已知微波材料Zn2SiO4和Zn3B2O6的复合材料的物理和介电性能,目的是开发一种用于低温共烧陶瓷应用的低损耗介电材料。 Zn2SiO4的化学计量偏离相与额外的SiO2被用于避免未反应的ZnO的发生。在烧结过程中,发现硼酸锌与残留的SiO2部分反应形成Zn2SiO4。残留的硼酸锌被转化为富含硼的玻璃相,这有助于降低复合材料的烧结温度。在低于硼酸锌熔化温度的温度下,良好的相对烧结密度(> 90%)表明了基于扩散的传质的烧结机理。硅酸锌中含有15 wt%硼酸锌,2.5 wt%碳酸锂和20 wt%硼酸锌的复合材料的介电常数分别为6.8和6.1,在900°C烧结时的品质因数(Q×f)为48,800和94,300 GHz分别为950°C和950°C。在这些烧结温度下,这些品质因数结果接近于硅酸锌报道的最佳值。

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