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首页> 外文期刊>Sensors >Lamb Waves Propagation along 3C-SiC/AlN Membranes for Application in Temperature-Compensated, High-Sensitivity Gravimetric Sensors
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Lamb Waves Propagation along 3C-SiC/AlN Membranes for Application in Temperature-Compensated, High-Sensitivity Gravimetric Sensors

机译:沿3C-SiC / AlN膜传播的兰姆波在温度补偿,高灵敏度重力传感器中的应用

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摘要

The propagation of the fundamental quasi-symmetric Lamb mode S0 travelling along 3C-SiC/c-AlN composite plates is theoretically studied with respect to the AlN and SiC film thickness, the acoustic wave propagation direction and the electrical boundary conditions. The temperature effects on the phase velocity have been considered for four AlN/SiC-based electroacoustic coupling configurations, specifically addressing the design of temperature-compensated, enhanced-coupling, GHz-range electroacoustic devices. The gravimetric sensitivity and resolution of the four temperature-stable SiC/AlN composite structures are theoretically investigated with respect to both the AlN and SiC sensing surface. The SiC/AlN-based sensor performances are compared to those of surface acoustic waves and Lamb S0 mode mass sensors implemented on bulk conventional piezoelectric materials and on thin suspended membranes.
机译:从AlN和SiC的膜厚,声波的传播方向和厚度的角度研究了基本准对称Lamb模S 0 沿3C-SiC / c-AlN复合板的传播规律。电边界条件。对于四种基于AlN / SiC的电声耦合配置,已经考虑了温度对相速度的影响,特别是解决了温度补偿的,增强耦合的GHz范围电声器件的设计。理论上针对AlN和SiC感测表面研究了四种温度稳定的SiC / AlN复合结构的重量灵敏度和分辨率。将基于SiC / AlN的传感器性能与表面声波和Lamb S 0 模式质量传感器在大型常规压电材料和薄悬浮膜上实现的性能进行了比较。

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