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首页> 外文期刊>Journal of intelligent material systems and structures >Dynamic Behavior of Structure-mounted Disk-shape Piezoelectric Sensors Including the Adhesive Layer
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Dynamic Behavior of Structure-mounted Disk-shape Piezoelectric Sensors Including the Adhesive Layer

机译:包含粘合层的结构化圆盘形压电传感器的动态行为

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摘要

Piezoelectric (PZT) transducers are commonly used for numerous diagnostic techniques for nondestructive evaluation (NDE) of structures. Researchers in the past have shown that the presence of an adhesive layer between the PZT patch and the structure could have a significant impact both on the amplitude of the wave propagated into the structure and on its Electromechanical impedance (EMI) signature. To account for losses, models have been developed to describe the effects of the adhesive layer. Nonetheless, the models found in the literature are strictly valid for either 1D or rectangular PZT patches only. The aim of this article is to develop a dynamic model for a disk, PZT patch connected to a structure by means of a thin adhesive layer. Unlike previous works, it was found that for disk-shape sensors the effect of the adhesive layer is frequency dependent and that the losses due to the shear deformation of the adhesive layer for the case near the first radial resonant mode were considerably lower than for the quasi-static case. In order to validate the model developed in this article, experimental data are compared to the predicted EMI signatures of disk-shape sensors mounted on a structure for various configurations.
机译:压电(PZT)传感器通常用于多种诊断技术,以进行结构的无损评估(NDE)。过去的研究人员表明,PZT贴片和结构之间存在粘合层可能会对传播到结构中的波幅及其电磁阻抗(EMI)信号产生重大影响。为了解决损失,已经开发出模型来描述粘合剂层的作用。但是,文献中发现的模型仅对一维或矩形PZT贴片有效。本文的目的是为通过薄粘合剂层连接到结构的磁盘,PZT贴片开发动态模型。与以前的工作不同,已发现对于盘形传感器,粘合剂层的作用取决于频率,并且在第一径向共振模式附近的情况下,由于粘合剂层的剪切变形而引起的损耗明显低于传感器的频率。准静态情况。为了验证本文开发的模型,将实验数据与安装在用于各种配置的结构上的盘形传感器的预测EMI签名进行了比较。

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