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Application of the Piezoelectric Materials for Health Monitoring in Civil Engineering: An Overview

机译:压电材料在土木工程健康监测中的应用:概述

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There are strong demands for health-monitoring techniques in civil engineering. Piezoelectric sensors and actuators provide a new promising approach to addressing these demands. Smart structure embedded with piezoelectric sensors and actuators has the advantage of structural simplicity, low cost, quick response and high reliability This paper first reviews the basics of the piezoelectric materials, in particular the Lead Zirconate Titanate (PZT), and then presents various methods of structural health monitoring using piezoelectric materials The most popular principle of health monitoring using PZT patches is to compare the dynamic response, impedance or modal parameters of the current structural status with those of the healthy state In the implementation of this principle, the health monitoring methods using piezoelectric materials can be summed up as comparing the following parameters between the healthy structure and the damaged structure: modal parameters (modal shape, natural modal frequency, damping ratio, etc ), frequency response, time response, impedance response, transfer function, etc. In processing and analyzing the sensor signal, the artificial neural network, wavelet analysis etc are useful to detect the nature, size and location of damage.
机译:在土木工程中对健康监测技术有强烈的需求。压电传感器和执行器为解决这些需求提供了一种新的有前途的方法。嵌入压电传感器和执行器的智能结构具有结构简单,成本低,响应速度快和可靠性高的优点。本文首先回顾了压电材料的基础知识,尤其是锆钛酸铅(PZT),然后提出了各种方法。使用压电材料的结构健康监测使用PZT贴片进行健康监测的最流行原则是将当前结构状态的动态响应,阻抗或模态参数与健康状态进行比较。在实施此原理时,使用可以通过比较健康结构和受损结构之间的以下参数来总结压电材料:模态参数(模态形状,自然模态频率,阻尼比等),频率响应,时间响应,阻抗响应,传递函数等。在处理和分析传感器信号时,人工神经网络神经网络,小波分析等可用于检测损坏的性质,大小和位置。

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