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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >New method of change in temperature coefficient delay of acoustic waves in thin piezoelectric plates
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New method of change in temperature coefficient delay of acoustic waves in thin piezoelectric plates

机译:压电薄板中声波温度系数延迟变化的新方法

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摘要

As is well-known, the development of highly effective and thermostable acoustic devices assumes using the acoustic waves with high coefficient of electromechanical coupling (K2) and low temperature coefficient of delay (TCD). At present, it also is well-known that fundamental shear horizontal (SH0) acoustic waves in thin piezoelectric plates possess significantly more electromechanical coupling compared to surface acoustic waves (SAW) in the same material. However, although the value of TCD of SH0 waves is insignificantly less than for SAW, this is not enough for development of thermostable devices. This paper suggests a new way of decreasing TCD of SH0 waves in piezoelectric plates at a high level of electromechanical coupling. This way assumes to use the structure containing the piezoelectric plate and liquid with the special dependence of permittivity on temperature. Theoretical and experimental investigation showed that, for SH0 wave in YX LiNbO3 plate at hf=700 m/s (h=plate thickness, f=wave frequency) the presence of butyl acetate can decrease the value of TCD by six times at K2=30%. In a whole the obtained results open the wide prospect of using SH0 wave in thin piezoelectric plate for development of highly effective and thermo-stable acoustic devices
机译:众所周知,高效且热稳定的声学设备的开发假设使用具有高机电耦合系数(K2)和低温度延迟系数(TCD)的声波。目前,众所周知,与相同材料中的表面声波(SAW)相比,薄压电板中的基本水平剪切声波(SH0)具有明显更多的机电耦合。但是,尽管SH0波的TCD值比SAW的值要小得多,但这不足以开发热稳定器件。本文提出了一种在机电耦合高水平下降低压电板SH0波TCD的新方法。这种方式假定使用包含压电板和液体的结构,介电常数对温度具有特殊的依赖性。理论和实验研究表明,对于YX LiNbO3板中的SH0波,在hf = 700 m / s(h =板厚度,f =波频率)下,乙酸丁酯的存在会使K2 = 30时TCD值降低六倍。 %。总体而言,所获得的结果为在薄压电板中使用SH0波开发高效且热稳定的声学装置打开了广阔的前景。

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