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The sensor for measuring the micro-displacements based on the piezoelectric resonator with lateral electric field

机译:基于带横向电场的压电谐振器测量微位移的传感器

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Theoretical and experimental studies of the influence of a thin metal film on the characteristics of a piezoelectric resonator with a lateral electric field showed the possibility of creating a micro-displacement meter in the range of 10-300 mu m. For the experiments, two resonators based on the plates of PZT piezoceramics with a thickness of 3.56 and 4.46 mm with resonant frequencies of similar to 96 and similar to 260 kHz for both resonators were used. It has been experimentally established that in both cases, with an increase in the width of the gap between the free side of the piezoelectric resonator and thin aluminum film, the frequency of the parallel resonance and maximum value of the real part of the electrical impedance increase and reach saturation. Besides, it has been shown that the relative change of these values with a change in the width of the gap in the range 10-300 mu m increases with decreasing the thickness of the resonator. In this case, the frequency of the series resonance practically does not change. It has been also established that the sensitivity of the resonator to the presence of a conducting film at the resonant frequency of similar to 96 kHz is significantly higher in comparison with the resonant frequency of similar to 260 kHz. The experimental results are in the qualitative agreement with the theoretical data.
机译:薄金属膜对具有横向电场的压电谐振器特性的理论和实验研究表明,在10-300μm的范围内产生微位移计的可能性。对于实验,使用具有厚度为3.56和4.46mm的PZT压电陶瓷板的两个谐振器使用,其共振频率类似于96且类似于两个谐振器的260kHz。已经通过实验确定,在两种情况下,压电谐振器的自由侧与薄铝膜之间的间隙的宽度增加,并联谐振的频率和电阻的实际部分的最大值增加并达到饱和度。此外,已经表明,在10-300μm范围内的间隙的宽度的变化随着谐振器的厚度而增加,这些值的相对变化随着谐振器的厚度而增加。在这种情况下,串联谐振的频率实际上不会改变。还建立了谐振器在与96kHz相似的谐振频率下,谐振器对导电膜的存在的灵敏度相比,与260kHz的谐振频率相比显着更高。实验结果是与理论数据的定性协议。

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