标题: 具反对称指插电极之压电纤维复材超音波换能器及应用
Antisymmetric Interdigitated Electrode Piezoelectric Fiber Composite Ultrasonic Transducers and Applications
作者: 尹庆中
YIN CHING-CHUNG
国立交通大学机械工程学系(所)
关键字: 反对称指插电极;压电纤维复材;声波感测器;导波;湿度侦测;Antisymmetric interdigitated electrode;Piezoelectric fiber composite;Acoustic
wave sensor;Guided wave;Moisture detection
公开日期: 2012
摘要: 本计画为兩年期研究计画,发展一种崭新的声波换能器(简称AE-PFC),并评估其
在质子交换膜燃料电池的应用潜力,侦测质子交换膜的湿度。AE-PFC 是由单一方向排
列的压电纤维黏着于兩片软性指叉电极之间,形成三明治结构。反对称排列的指叉电极
之电力线与纤维方向成一夹角,提供斜向极化及挠曲致动所需的电场。AE-PFC 的质量
轻、柔软度适中,激发固定波长的挠性板波,不仅可以平顺黏贴于具有曲率的结构表面,
还可以作为超音波检测及声波感测研究的关键元件。本研究以有限元素分析探讨
AE-PFC 的动态特性,其频率响应为电极节距的函數,主结构的材料性质及厚度对于声
波的工作频率仅有稍微的影响,AE-PFC 的挠曲共振不因黏贴于主结构基材而消失。
A novel acoustic wave transducer AE-PFC and its potential application in moisture
detection of the proton exchange membrane fuel cell are proposed in this two-year research
program. The acoustic transducer is formed with unidirectional piezoelectric fibers
sandwiched between two thin flexible sheets printed with interdigitated electrodes (IDE). The
electric field lines induced by the anti-symmetrically aligned electrodes are inclined to the
piezoelectric fibers. The IDE provides necessary electric field for polling and excitation of
flexural plate waves. Because of light mass and moderate flexibility, AE-PFC is ideally
conformable to the curved surface of the host structures. It can be used as a key component to
generate fixed-wavelength flexural waves for ultrasonic inspection and acoustic wave sensing
applications. A further numerical simulation for understanding the dynamic characteristics of
AE-PFC was carried out using finite element analysis. The frequency responses of AE-PFC
are explored as a function of the electrode pitch. The operating frequency of AE-PFC is
almost independent of the material properties and thickness of the host structures. The
flexural resonances of AE-PFC still remain when it is adhered to a host structure.
官方说明文件#: NSC101-2221-E009-021-MY2
URI: http://hdl.handle.net/11536/98786
https://www.grb.gov.tw/search/planDetail?id=2582291&docId=388990
显示于类别:Research Plans