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首页> 外文期刊>Journal of Electronic Materials >Low-Temperature Sintering of Gahnite Ceramic Using Cu-Nb-O Additive and Evaluation of Dielectric and Thermal Properties
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Low-Temperature Sintering of Gahnite Ceramic Using Cu-Nb-O Additive and Evaluation of Dielectric and Thermal Properties

机译:使用Cu-NB-O添加剂和介电和热性能评价的Gahnite陶瓷的低温烧结

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摘要

Low-temperature sintering of gahnite (ZnAl2O4) ceramic, which has the potential to exhibit higher thermal conductivity than alumina but sinters densely at a moderate temperature of approximately 1500 degrees C, has been investigated. When adding only 5 wt.% Cu-Nb-O additive, the sintering temperature was lowered significantly to 960 degrees C. The sample fired at 960 degrees C for 2 h exhibited a relative permittivity (epsilon(r)) of 9.1, a quality factor multiplied by resonant frequency (Q x f) value of 30,000 GHz (at a measurement frequency of approximately 13 GHz), and a temperature coefficient of resonant frequency (tau(f)) of -69 ppm/K, being relatively satisfactory values. However, the thermal conductivity of the sample was 9.3 W/m-K, which exceeds that of conventional low-temperature co-fired ceramic (LTCC) materials but is only one-third of that of the pure gahnite sample (27 W/m-K). Our analysis revealed that the main cause was the incorporation of the Cu component into the gahnite lattice. These results enable the proposal of guidelines for the development of new LTCC materials with high thermal conductivity.
机译:研究了低温烧结陶瓷(ZNAL2O4)陶瓷,其具有比氧化铝更高的导热率较高,但烧结在约1500℃的中等温度下烧结。当仅添加5重量%的Cu-Nb的-O添加剂,烧结温度显著降低至960℃。将样品焙烧在960摄氏度2小时表现出相对介电常数为9.1(ε-(R)),质量因子乘以30,000GHz的谐振频率(Q XF)值(以约13GHz的测量频率),以及-69ppm / k的谐振频率(Tau(f))的温度系数相对令人满意。然而,样品的导热率为9.3W / m-K,其超过常规的低温共烧陶瓷(LTCC)材料的热导率,但仅是纯Gahnite样品的三分之一(27W / m-K)。我们的分析显示,主要原因是将Cu组分掺入Gahnite格中。这些结果可以提出具有高导热性的新型LTCC材料的准则。

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