用于MEMS应用的高温陶瓷材料的微波频率表征

Xinhua Ren, T. Jiang, Yiguang Wang, L. An, X. Gong
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引用次数: 13

摘要

本文采用一种高精度的微波测量技术,对两种新型高温陶瓷材料SiCN和AlPO4的介电常数和损耗正切进行了表征。这些陶瓷材料具有高热稳定性和耐腐蚀性,使其能够用于高温传感应用。这些陶瓷材料的介电性能是研制涡轮发动机高温传感器的关键参数。结果表明,SiCN的介电常数为4.358,损耗正切为5.26·10−3。对于AlPO4,这两个参数分别为2.637和4.23·10−3。介电常数测量的标准偏差小于0.58%,损耗正切测量的标准偏差小于5.72%,具有良好的测量重复性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of high-temperature ceramic materials at microwave frequencies for MEMS applications
In this paper, the dielectric constant and loss tangent of two new high-temperature ceramic materials, SiCN and AlPO4, are characterized using a novel measurement technique at microwave frequencies with high accuracy. These ceramic materials exhibit high thermal stabilities and corrosion resistance, enabling their use for high-temperature sensing applications. The dielectric properties of these ceramic materials are critical parameters in order to develop high-temperature sensors for turbine engines. It is found that the dielectric constant and loss tangent of SiCN are 4.358 and 5.26 · 10−3, respectively. For AlPO4, the two parameters are 2.637 and 4.23 · 10−3, respectively. The standard deviation is less than 0.58% for the dielectric constant measurement and less than 5.72% for the loss tangent measurement, demonstrating excellent measurement repeatability.
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