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Integrated impedance and guided wave based damage detection

机译:集成阻抗和基于导波的损坏检测

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摘要

Recently, impedance and guided wave based damage detection techniques have been widely used for structural health monitoring (SHM) and Nondestructive testing (NDT) due to their sensitivity to small structural changes. Each of these techniques has its own technical merits, making them complementary to each other. For example, the guided wave technique typically has a larger sensing range than the impedance technique while the latter has better applicability to more complex structures. In this study, a new damage detection technique, which is named as integrated impedance and guided wave (IIG) based damage detection, is developed by utilizing impedance and guided wave signals simultaneously obtained from surface-mounted piezoelectric transducers (PZTs) to enhance the performance and reliability of damage diagnosis especially under varying temperature conditions. The proposed IIG technique first divides the measured impedance signal into two parts: passive impedance only sensitive to temperature variation and active impedance closely related to the mechanical property of the host structure. Then, the temperature effects on the active impedance and guided wave signals are minimized using the passive impedance. Finally, improved damage diagnosis is performed using both impedance and guided wave signals. The applicability of the proposed IIG technique to the detection of (1) bolt loosening in a steel lap joint, (2) a notch in an aluminum specimen with a complex geometry and (3) delamination in a composite wing mock-up specimen with stringers is experimentally investigated under varying temperatures.
机译:近年来,基于阻抗和导波的损伤检测技术由于对微小结构变化的敏感性而被广泛用于结构健康监测(SHM)和无损检测(NDT)。这些技术中的每一种都有其自身的技术优点,使其彼此互补。例如,导波技术通常比阻抗技术具有更大的感测范围,而后者对更复杂的结构具有更好的适用性。在这项研究中,通过利用从表面安装压电换能器(PZT)同时获得的阻抗和导波信号,开发了一种新的损伤检测技术,称为基于集成阻抗和导波(IIG)的损伤检测。诊断的可靠性和可靠性,尤其是在温度变化的条件下。提出的IIG技术首先将测得的阻抗信号分为两部分:仅对温度变化敏感的无源阻抗和与主体结构的机械性能密切相关的有源阻抗。然后,使用无源阻抗可将温度对有源阻抗和导波信号的影响降至最低。最后,使用阻抗和导波信号进行改进的损伤诊断。提议的IIG技术在以下方面的适用性:(1)钢搭接中的螺栓松动;(2)几何形状复杂的铝制样品中的缺口;(3)带有纵梁的复合机翼模型中的分层在不同温度下进行实验研究。

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