Lin Hsien-Yang, Huang Jin-Hung, Ma Chien-Ching
Department of Mechanical Engineering, De Lin Institute of Technology, Tucheng, Taiwan 23646, Republic of China.
IEEE Trans Ultrason Ferroelectr Freq Control. 2003 Sep;50(9):1084-99. doi: 10.1109/tuffc.2003.1235320.
An optical full-field technique, called amplitude-fluctuation electronic speckle pattern interferometry (AF-ESPI), is used in this study to investigate the force-induced transverse vibration of an angle-ply laminated composite embedded with a piezoceramic layer (piezolaminated plates). The piezolaminated plates are excited by applying time-harmonic voltages to the embedded piezoceramic layer. Because clear fringe patterns will appear only at resonant frequencies, both the resonant frequencies and mode shapes of the vibrating piezolaminated plates with five different fiber orientation angles are obtained by the proposed AF-ESPI method. A laser Doppler vibrometer (LDV) system that has the advantage of high resolution and broad dynamic range also is applied to measure the frequency response of piezolaminated plates. In addition to the two proposed optical techniques, numerical computations based on a commercial finite element package are presented for comparison with the experimental results. Three different numerical formulations are used to evaluate the vibration characteristics of piezolaminated plates. Good agreements of the measured data by the optical method and the numerical results predicted by the finite element method (FEM) demonstrate that the proposed methodology in this study is a powerful tool for the vibration analysis of piezolaminated plates.
本研究采用一种名为振幅波动电子散斑图案干涉术(AF-ESPI)的光学全场技术,来研究嵌入压电陶瓷层的角铺设层合复合材料(压电层合板)的力致横向振动。通过向嵌入的压电陶瓷层施加时谐电压来激励压电层合板。由于清晰的条纹图案仅在共振频率处出现,因此利用所提出的AF-ESPI方法获得了具有五种不同纤维取向角的振动压电层合板的共振频率和振型。还应用了具有高分辨率和宽动态范围优势的激光多普勒测振仪(LDV)系统来测量压电层合板的频率响应。除了这两种所提出的光学技术外,还给出了基于商业有限元软件包的数值计算结果,以便与实验结果进行比较。使用三种不同的数值公式来评估压电层合板的振动特性。光学方法测得的数据与有限元法(FEM)预测的数值结果之间的良好一致性表明,本研究中所提出的方法是用于压电层合板振动分析的有力工具。