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Integrated Structural Health Assessment Using Piezoelectric Active Sensors

机译:使用压电有源传感器的综合结构健康评估

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This paper illustrates an integrated approach for identifying structural damage. The method presented utilizes piezoelectric (PZT) materials to actuate/sense the dynamic response of the structures. Two damage identification techniques are integrated in this study, including impedance methods and Lamb wave propagations. The impedance method monitors the variations in structural mechanical impedance, which is coupled with the electrical impedance of the PZT patch. In Lamb wave propagations, one PZT patch acting as an actuator launches an elastic wave through the structure, and responses are measured by an array of PZT sensors. The changes in both wave attenuation and reflection are used to detect and locate the damage. Both the Lamb wave and impedance methods operate in high frequency ranges at which there are measurable changes in structural responses even for incipient damage such as small cracks, debonding, or loose connections. The combination of the local impedance method with the wave propagation based approach allows a better characterization of the system’s structural integrity. The paper concludes with experimental results to demonstrate the feasibility of this integrated active sensing technology.
机译:本文阐述了一种识别结构损伤的综合方法。提出的方法利用压电(PZT)材料来驱动/感知结构的动态响应。本研究中集成了两种损伤识别技术,包括阻抗方法和兰姆波传播。阻抗方法监视结构机械阻抗的变化,该变化与PZT贴片的电阻抗有关。在兰姆波传播中,一个用作致动器的PZT贴片通过结构发射弹性波,并通过一组PZT传感器测量响应。波衰减和反射的变化均用于检测和定位损坏。兰姆波法和阻抗法都在高频范围内运行,在该频率范围内,即使对于诸如小裂缝,脱胶或松动连接等初期损坏,结构响应也有可测量的变化。本地阻抗方法与基于波传播的方法相结合,可以更好地表征系统的结构完整性。本文以实验结果作为结束,以证明这种集成式主动传感技术的可行性。

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