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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Experimental Measurement and Numerical Analysis on Resonant Characteristics of Cantilever Plates for Piezoceramic Bimorphs
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Experimental Measurement and Numerical Analysis on Resonant Characteristics of Cantilever Plates for Piezoceramic Bimorphs

机译:压电陶瓷双压电晶片悬臂板共振特性的实验测量与数值分析

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Three experimental techniques are used in this study to access the resonant characteristics of piezoceramic bimorphs in parallel and series connections. These experimental methods, including the amplitude-fluctuation electronic speckle pattern interferometry (AF-ESPI), laser Doppler vibrometer-dynamic signal analyzer (LDV-DSA), and impedance analysis, are based on the measurement of full-field displacement, point-wise displacement, and electric impedance, respectively. Because the clear fringe patterns will be shown only at resonant frequencies, both the resonant frequencies and the corresponding vibration mode shapes are successfully obtained at the same time by the AF-ESPI method. LDV-DSA is used to determine the resonant frequencies of the vibration mode for out-of-plane motion. The impedance analysis is used to measure the resonant and antiresonant frequencies for in-plane motion. Although the out-of-plane mode is the dominant motion of piezoceramic bimorphs. it is found in this study that the amount of displacement for the in-plane motion in parallel connection is large enough to be measured by AF-ESPI and impedance. It is interesting to note that resonant frequencies of the specimen in parallel connection for the out-of-plane motion determined by LDV-DSA are the same as that for the in-plane motion obtained by impedance. Furthermore, both in-plane and out-of-plane mode shapes for the specimen in parallel connection are obtained in the same resonant frequency from the AF-ESPI method. It is concluded in this study that the particle motions of piezoceramic bimorphs for parallel connection in resonance are essentially three-dimensional. However, it is found that only out-of-plane vibration modes can be excited for the specimen in series connection. Numerical computations based on the finite-element method are presented, and the theoretical predicted results are compared with the experimental measurements. Good agreements between the experimental measured data and -n-nnumerical calculated results are found for resonant frequencies and mode shapes of the piezoceramic bimorph
机译:在这项研究中使用了三种实验技术来访问并联和串联连接的压电陶瓷双压电晶片的谐振特性。这些实验方法,包括振幅波动电子散斑图干涉法(AF-ESPI),激光多普勒振动计-动态信号分析仪(LDV-DSA)和阻抗分析,都是基于逐点全场位移的测量位移和电阻抗。由于仅在共振频率下会显示清晰的条纹图案,因此通过AF-ESPI方法可以成功地同时获得共振频率和相应的振动模式形状。 LDV-DSA用于确定平面外运动的振动模式的共振频率。阻抗分析用于测量平面内运动的共振和反共振频率。尽管平面外模式是压电陶瓷双压电晶片的主要运动。在这项研究中发现,平行连接中的平面内运动的位移量足够大,可以通过AF-ESPI和阻抗进行测量。有趣的是,对于由LDV-DSA确定的平面外运动,平行连接的样品的共振频率与通过阻抗获得的平面内运动的共振频率相同。此外,通过AF-ESPI方法以相同的共振频率获得了并联连接的样品的面内和面外模式形状。在这项研究中得出的结论是,在共振中用于并联的压电陶瓷双压电晶片的粒子运动本质上是三维的。然而,发现对于串联连接的样本,仅平面外振动模式可以被激发。给出了基于有限元方法的数值计算,并将理论预测结果与实验测量结果进行了比较。对于压电陶瓷双压电晶片的共振频率和振型,发现实验测量数据与-n数值计算结果之间具有良好的一致性。

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