Mechanical Engineering Department, University of Wisconsin, Milwaukee, WI 53211, USA.
Sensors (Basel). 2018 Nov 11;18(11):3885. doi: 10.3390/s18113885.
Ultrasonic systems employing embedded piezoelectric transducers have seen increased interest in recent years. The ability to sense, actuate, and analyze the wave propagation modes in engineering structures has been fundamental to the advancement of ultrasonic structural health monitoring (SHM). This paper presents a study into the sensing and actuation properties of shear-mode (d35) piezoelectric transducers made of lead zirconate titanate (PZT) that are internally embedded in the bondline of laminate structures. The manuscript presents analytical analysis, finite element simulation, and experimental validation building from an individual piezoelectric element to a full laminate structure. The validated model was then used to perform a parametric study into the effects of d35 PZT transducer size on the strength of actuation and sensing output signal. The selectivity of d35 PZT sensors was also investigated by generating multiple wave modes in the laminate structure and inspecting the output signals. The d35 PZT sensors were found to selectively detect only certain modes of the wave propagation providing a fundamental hardware filter that could be employed to simplify signal analysis and processing. The results of this study indicate that d35 PZTs embedded in the bondline have multiple properties that can potentially be employed for ultrasonic SHM.
近年来,采用嵌入式压电换能器的超声系统引起了越来越多的关注。在工程结构中感知、激励和分析波动传播模式的能力是超声结构健康监测 (SHM) 发展的基础。本文研究了嵌入层合结构胶层中的锆钛酸铅 (PZT) 剪切模式 (d35) 压电换能器的传感和激励特性。本文从单个压电元件到整个层合结构,进行了分析、有限元模拟和实验验证。经过验证的模型随后用于对 d35 PZT 换能器尺寸对激励和传感输出信号强度的影响进行参数研究。还通过在层合结构中产生多个波动模式并检查输出信号来研究 d35 PZT 传感器的选择性。研究结果表明,嵌入胶层中的 d35 PZT 传感器具有多种潜在的超声 SHM 特性。