Zhang Taotao, Zhang Keping, Liu Wende, Liao Yangchao
School of Transportation Science and Engineering, Beihang University, Beijing 100191, China.
National Institute of Metrology, Beijing 100023, China.
Sensors (Basel). 2017 Sep 6;17(9):2035. doi: 10.3390/s17092035.
Cement-based piezoelectric composite, has been widely used as a kind of smart material in structural health monitoring and active vibration control. However, transient dynamic loads such as impact loads may cause serious damage to the composite. Considering the electrode layer effect, this paper aimed to investigate the theoretical response of a 2-2 cement-based piezoelectric composite sensor subjected to an impact load. The vibration behaviors are analyzed by using the mode summation method and the virtual work principle. To simulate the impact load, transient haversine wave loads are assumed in the numerical simulation. Close agreements between theoretical and numerical solutions are found for peak transient haversine wave loads larger than 500 kPa, therefore proving the validity of the theory. Moreover, the influence of the electrode material and geometrical parameters on the dynamic characteristics of this sensor are considered. The present work should be beneficial to the design of this kind of sensor by taking into account the electrode layer effect.
水泥基压电复合材料作为一种智能材料,已在结构健康监测和主动振动控制中得到广泛应用。然而,诸如冲击载荷等瞬态动态载荷可能会对该复合材料造成严重损坏。考虑到电极层效应,本文旨在研究2-2型水泥基压电复合材料传感器在冲击载荷作用下的理论响应。采用模态叠加法和虚功原理分析其振动行为。在数值模拟中,假定采用瞬态半正弦波载荷来模拟冲击载荷。当峰值瞬态半正弦波载荷大于500 kPa时,理论解与数值解吻合良好,从而证明了该理论的有效性。此外,还考虑了电极材料和几何参数对该传感器动态特性的影响。考虑电极层效应开展的这项工作,应有助于此类传感器的设计。