标题: 水平偏振超声导波之压电纤维复材换能器
Piezoelectric Fiber Composite Transducers for Horizontally Polarized Transverse Ultrasonic Guided Waves
作者: 蔡玮哲
Tasi, Wei-Zhe
尹庆中
Yin, Ching-Chung
机械工程系所
关键字: 压电纤维复材;导波换能器;水平偏振横波;厚度剪切;面剪切;piezoelectric fiber composite;guided-wave transducer;horizontally polarized transverse wave;thickness shear;face shear
公开日期: 2015
摘要: 压电纤维复材导波换能器是由压电陶瓷纤维、环氧树脂及印有指叉电极的软性印刷电路板组成的三明治结构,具有质量轻与可挠性佳等优点,可做为主动结构健康监测的换能器。本研究以垂直压电陶瓷纤维极化方向的电场驱动压电纤维复材,产生厚度剪切及面剪切变形,开发配备对称或反对称排列指叉电极的压电纤维复材,作为水平偏振超声导波换能器,简称TH-PFC换能器,以数值模拟与实验量测比较两者的致动及感测特性。
本研究量测极化过程中压电纤维复材的应变,定量分析其极化程度及适当的极化电压,数值模拟适当的极化电压引致压电纤维复材的电场,应用于TH-PFC的极化制程。数值模型的几何参数是以金相显微镜观测获得。本研究设计对称及反对称指叉电极之TH-PFC,波长分别为12及16个压电纤维复材单元长度,将其黏贴于厚度1 mm之铝板,做为导波换能器,数值及实验结果显示反对称指叉电极之TH-PFC的致动及感测能力较强。两种波长之反对称指叉电极的TH-PFC皆可有效地激发及感测铝板的水平偏振TH0、TH1板波,波长为12单元长度之TH-PFC生成的TH1板波响应振幅较强。
Piezoelectric fiber composites (PFC) are made of piezoelectric fibers which are embedded in epoxy resin and sandwiched between flexible polyimide sheets printed with interdigital electrodes. Taking advantages of light weight and conformal ability, PFC has a potential to be a guided wave transducer for active structural health monitoring. This thesis presents a study and development of novel transverse horizontal guided wave ultrasonic transducers made by PFC, which are abbreviated as TH-PFC transducers. The symmetric or anti-symmetric interdigital electrodes can apply electric field perpendicular to the poling direction along fibers and induce face shear or thickness shear deformation. Both actuating and sensing performances of TH-PFC were explored by numerical simulation and experiments.
In this work, the axial strain histories of PFC are in-situ monitored during poling process to quantitatively determine the poling situation and adequate voltage application. Geometric dimensions of PFC components were measured using a metallurgical microscope and afterwards applied in numerical simulation. Several prototypes with four combinations, including symmetric or anti-symmetric interdigital electrodes and wave lengths identical to 12 or 16 cell lengths, were developed. The TH-PFC adhered to 1 mm thick aluminum plate can be functioned as plate wave transducers. Numerical and experimental results indicate that TH-PFC equipped with anti-symmetric electrodes has better actuating and sensing capabilities than that with symmetric electrodes. The transverse horizontal plate modes, TH0 and TH1, in aluminum plate can be efficiently excited and detected by the TH-PFC with above wavelengths. The TH-PFC transducers with the shorter wavelength can achieve a larger response in TH1 mode.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT070251074
http://hdl.handle.net/11536/127443
显示于类别:Thesis