Ma Chien-Ching, Lin Yu-Chih, Lin Hsien-Yang
Department of Mechanical Engineering, National Taiwan University, Taipei, Taiwan, Republic of China.
IEEE Trans Ultrason Ferroelectr Freq Control. 2008 Mar;55(3):526-37. doi: 10.1109/TUFFC.2008.679.
Piezolaminated composite plates have received considerable attention in various industrial applications due to their intelligent characteristics. In this investigation, two experimental measurement techniques are used to determine the in-plane resonant vibration of angle-ply laminated composites embedded with a piezoceramic layer (piezolaminated plates) for different stacking angles. The first method is a full-field optical technique, which is called the AF-ESPI (amplitude-fluctuation electronic speckle pattern interferometry). This is the major experimental method. The AF-ESPI method is used to determine the in-plane resonant frequency and corresponding mode shape of a single-layer piezoceramic plate and piezolaminated plates with five different stacking angles. The second experimental technique, the impedance analyzer, is employed to determine the in-plane resonant frequency. Finally, numerical computations based on the finite element analysis are presented for comparison of the two experimental results. Excellent agreement between the experimentally measured data and the numerically calculated results are found for in-plane resonant frequencies and mode shapes. This study indicates that the dynamic characteristics of inplane resonant vibrations for piezolaminated plates with different stacking angles are quite different.
由于具有智能特性,压电层合复合板在各种工业应用中受到了广泛关注。在本研究中,采用了两种实验测量技术来确定不同堆叠角度下嵌入压电陶瓷层的角铺设层合复合材料(压电层合板)的面内共振振动。第一种方法是一种全场光学技术,称为AF-ESPI(振幅波动电子散斑图案干涉测量法)。这是主要的实验方法。AF-ESPI方法用于确定单层压电陶瓷板和具有五种不同堆叠角度的压电层合板的面内共振频率和相应的振型。第二种实验技术,即阻抗分析仪,用于确定面内共振频率。最后,给出了基于有限元分析的数值计算结果,以比较两种实验结果。在面内共振频率和振型方面,实验测量数据与数值计算结果之间发现了很好的一致性。这项研究表明,不同堆叠角度的压电层合板的面内共振振动的动态特性有很大差异。