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Multiple Crack Detection of Concrete Structures Using Impedance-based Structural Health Monitoring Techniques

机译:基于阻抗的结构健康监测技术对混凝土结构的多次裂缝检测

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摘要

This paper presents a feasibility study for practical applications of an impedance-based real-time health monitoring technique applying PZT (Lead–Zirconate–Titanate) patches to concrete structures. First, comparison between experimental and analytical studies for damage detection on a plain concrete beam is made. In the experimental study, progressive surface damage inflicted artificially on the plain concrete beam is assessed by using both lateral and thickness modes of the PZT patches. Then, an analytical study based on finite element (FE) models is carried out to verify the validity of the experimental result. Secondly, multiple (shear and flexural) cracks incurred in a reinforced concrete (RC) beam under a third point bending test are monitored continuously by using a sensor array system composed of the PZT patches. In this study, a root mean square deviation (RMSD) in the impedance signatures of the PZT patches is used as a damage indicator.
机译:本文介绍了将PZT(铅-锆-钛-钛酸盐)贴片应用于混凝土结构的基于阻抗的实时健康监测技术的实际应用的可行性研究。首先,比较了普通混凝土梁损伤检测的实验研究和分析研究。在实验研究中,通过使用PZT贴片的横向和厚度模式来评估人为地作用于普通混凝土梁的渐进表面损伤。然后,基于有限元(FE)模型进行了分析研究,以验证实验结果的有效性。其次,使用由PZT贴片组成的传感器阵列系统,连续监测钢筋混凝土(RC)梁在第三点弯曲试验下产生的多个(剪切和弯曲)裂缝。在这项研究中,PZT贴片的阻抗特征中的均方根偏差(RMSD)被用作损伤指标。

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