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Multi-Mode and Multi-Frequency Guided Wave Imaging via Chirp Excitations

机译:通过线性调频激发进行多模和多频导波成像

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Guided wave imaging has shown great potential for structural health monitoring applications by providing a way to visualize and characterize structural damage. For successful implementation of delay-and-sum and other elliptical imaging algorithms employing guided ultrasonic waves, some degree of mode purity is required because echoes from undesired modes cause imaging artifacts that obscure damage. But it is also desirable to utilize multiple modes because different modes may exhibit increased sensitivity to different types and orientations of defects. The well-known mode-tuning effect can be employed to use the same PZT transducers for generating and receiving multiple modes by exciting the transducers with narrowband tone bursts at different frequencies. However, this process is inconvenient and time-consuming, particularly if extensive signal averaging is required to achieve a satisfactory signal-to-noise ratio. In addition, both acquisition time and data storage requirements may be prohibitive if signals from many narrowband tone burst excitations are measured. In this paper, we utilize a chirp excitation to excite PZT transducers over a broad frequency range to acquire multi-modal data with a single transmission, which can significantly reduce both the measurement time and the quantity of data. Each received signal from a chirp excitation is post-processed to obtain multiple signals corresponding to different narrowband frequency ranges. Narrowband signals with the best mode purity and echo shape are selected and then used to generate multiple images of damage in a target structure. The efficacy of the proposed technique is demonstrated experimentally using an aluminum plate instrumented with a spatially distributed array of piezoelectric sensors and with simulated damage.
机译:导波成像通过提供可视化和表征结构损伤的方法,在结构健康监测应用中显示了巨大的潜力。为了成功实施延迟和和及其他使用引导超声波的椭圆成像算法,需要一定程度的模式纯度,因为来自不希望的模式的回波会导致掩盖损伤的成像伪像。但是,还期望利用多种模式,因为不同的模式可以表现出对不同类型和缺陷取向的增加的敏感性。通过以不同频率的窄带音调突发来激励换能器,可以采用众所周知的模式调谐效果来使用相同的PZT换能器来生成和接收多种模式。然而,该过程不方便且耗时,特别是如果需要大量的信号平均以实现令人满意的信噪比时。另外,如果测量了来自许多窄带音频脉冲串激励的信号,则采集时间和数据存储要求都可能会被禁止。在本文中,我们利用线性调频脉冲激励器在很宽的频率范围内激发PZT换能器,以单次传输来获取多模态数据,这可以显着减少测量时间和数据量。对来自线性调频激励的每个接收信号进行后处理,以获得对应于不同窄带频率范围的多个信号。选择具有最佳模式纯度和回波形状的窄带信号,然后将其用于在目标结构中生成损坏的多个图像。所提出的技术的有效性通过使用铝板进行实验证明,该铝板配备有空间分布的压电传感器阵列并具有模拟的损坏。

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