Huang Chi-Hung, Lin Yu-Chih, Ma Chien-Ching
Department of Mechanical Engineering, Ching Yun University, Chung-Li, Taiwan 320, Republic of China.
IEEE Trans Ultrason Ferroelectr Freq Control. 2004 Jan;51(1):12-24. doi: 10.1109/tuffc.2004.1268463.
Based on the electroelastic theory for piezoelectric plates, the vibration characteristics of piezoceramic disks with free-boundary conditions are investigated in this work by theoretical analysis, numerical simulation, and experimental measurement. The resonance of thin piezoceramic disks is classified into three types of vibration modes: transverse, tangential, and radial extensional modes. All of these modes are investigated in detail. Two optical techniques, amplitude-fluctuation electronic speckle pattern interferometry (AF-ESPI) and laser Doppler vibrometer (LDV), are used to validate the theoretical analysis. Because the clear fringe patterns are shown only at resonant frequencies, both the resonant frequencies and the corresponding mode shapes are obtained experimentally at the same time by the proposed AF-ESPI method. Good quality of the interferometric fringe patterns for both the transverse and extensional vibration mode shapes are demonstrated. The resonant frequencies of the piezoceramic disk also are measured by the conventional impedance analysis. Both theoretical and experimental results indicate that the transverse and tangential vibration modes cannot be measured by the impedance analysis, and only the resonant frequencies of extensional vibration modes can be obtained. Numerical calculations based on the finite element method also are performed, and the results are compared with the theoretical analysis and experimental measurements. It is shown that the finite element method (FEM) calculations and the experimental results agree fairly well for the resonant frequencies and mode shapes. The resonant frequencies and mode shapes predicted by theoretical analysis and calculated by finite element method are in good agreement, and the difference of resonant frequencies for both results with the thickness-to-diameter (h/D) ratios, ranging from 0.01 to 0.1, are presented.
基于压电板的电弹性理论,本文通过理论分析、数值模拟和实验测量,研究了自由边界条件下压电陶瓷圆盘的振动特性。薄压电陶瓷圆盘的共振分为三种振动模式:横向、切向和径向伸缩模式。对所有这些模式都进行了详细研究。使用两种光学技术,即振幅波动电子散斑图案干涉术(AF-ESPI)和激光多普勒振动计(LDV)来验证理论分析。由于仅在共振频率处显示清晰的条纹图案,因此通过所提出的AF-ESPI方法同时在实验上获得了共振频率和相应的振型。展示了横向和伸缩振动振型的干涉条纹图案的良好质量。压电陶瓷圆盘的共振频率也通过传统的阻抗分析进行测量。理论和实验结果均表明,阻抗分析无法测量横向和切向振动模式,只能获得伸缩振动模式的共振频率。还进行了基于有限元方法的数值计算,并将结果与理论分析和实验测量进行了比较。结果表明,有限元方法(FEM)计算与实验结果在共振频率和振型方面相当吻合。理论分析预测的共振频率与有限元方法计算的结果吻合良好,并给出了厚度与直径(h/D)比在0.01至0.1范围内两种结果的共振频率差异。