Department of Mechanical Engineering, Yuan-Ze University, Chung-Li, Taiwan.
Sensors (Basel). 2010;10(1):719-33. doi: 10.3390/s100100719. Epub 2010 Jan 20.
The coupling effects between the mechanical and electric properties of piezoelectric materials have drawn significant attention for their potential applications as sensors and actuators. In this investigation, two piezoelectric actuators are symmetrically surface bonded on a cross-ply composite laminate. Electric voltages with the same amplitude and opposite sign are applied to the two symmetric piezoelectric actuators, resulting in the bending effect on the laminated plate. The bending moment is derived by using the classical laminate theory and piezoelectricity. The analytical solution of the flexural displacement of the simply supported composite plate subjected to the bending moment is solved by using the plate theory. The analytical solution is compared with the finite element solution to show the validation of present approach. The effects of the size and location of the piezoelectric actuators on the response of the composite laminate are presented through a parametric study. A simple model incorporating the classical laminate theory and plate theory is presented to predict the deformed shape of the simply supported laminate plate.
压电材料的力学和电学性能的耦合效应对其作为传感器和执行器的潜在应用引起了广泛关注。在这项研究中,两个压电致动器对称地表面粘结在正交层合复合材料层压板上。两个对称的压电致动器施加相同幅度和相反符号的电压,导致层压板产生弯曲效应。弯矩由经典层合理论和压电学推导得出。通过板理论,求解了受弯矩作用的简支复合材料板的弯曲位移的解析解。将解析解与有限元解进行比较,以验证本方法的有效性。通过参数研究,给出了压电致动器的尺寸和位置对复合材料层压板响应的影响。提出了一个简单的模型,结合经典层合理论和板理论,用于预测简支层压板的变形形状。