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A scanning spatial-wavenumber filter and PZT 2-D cruciform array based on-line damage imaging method of composite structure

机译:基于扫描波数滤波器和PZT二维十字阵列的复合结构在线损伤成像方法

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摘要

The spatial-wavenumber filtering technique of Lamb wave is gradually applied for damage inspection of composite structure in recent years because it is an effective approach to distinguish the wave propagating direction and mode. But for on-line damage monitoring of composite structure by using spatial-wavenumber filter, the problem is how to realize the spatial-wavenumber filtering of Lamb wave when the wavenumber response cannot be measured or modeled. This paper proposes a scanning spatial-wavenumber filter and piezoelectric sensor (referred to as PZT) 2-D cruciform array based on-line damage imaging method of composite structure. In this method, a 2-D cruciform array constructed by two linear PZT arrays is placed on composite structure permanently to acquire Lamb wave damage scattering signal on-line. For one linear PZT array, a scanning spatial-wavenumber filter which does not rely on any modeled or measured wavenumber response is designed to filter the damage scattering signal at a designed wavenumber bandwidth to give out a wavenumber-time image. Based on the image, the wavenumber of the damage scattering signal projecting at the array can be obtained. The same process can be also applied to the other linear PZT array to get the wavenumber projecting at that array direction. By combining with the two projection wavenumbers, the damage can be localized without blind angle. The method is validated on an aircraft composite oil tank of variable thickness. The validation results show that the damage direction estimation error is less than 2 degrees and the damage distance estimation error is around 20 mm in the monitoring area of nearly 600 mm x 300 mm. It indicates an acceptable performance of the damage imaging method for complex composite structure. (C) 2016 Elsevier B.V. All rights reserved.
机译:兰姆波的空间波数滤波技术近年来已逐渐应用于复合结构的损伤检测,因为它是区分波传播方向和波型的有效方法。但是对于使用空间波数滤波器的复合结构在线损伤监测,问题在于在无法测量或建模波数响应时如何实现兰姆波的空间波数滤波。提出了一种基于复合结构在线损伤成像的扫描空间波数滤波器和压电传感器(称为PZT)二维十字阵列。该方法是将由两个线性PZT阵列构成的二维十字形阵列永久放置在复合结构上,以在线获取兰姆波损伤散射信号。对于一个线性PZT阵列,设计一种不依赖于任何建模或测量的波数响应的扫描空间波数滤波器,以在设计的波数带宽处过滤损伤散射信号,以给出波数-时间图像。基于该图像,可以获得投射在阵列上的损伤散射信号的波数。相同的过程也可以应用于其他线性PZT阵列,以得到在该阵列方向上投影的波数。通过结合两个投影波数,可以将损坏定位在没有盲角的位置。该方法在可变厚度的飞机复合油箱上得到了验证。验证结果表明,在接近600 mm x 300 mm的监测区域中,损伤方向估计误差小于2度,损伤距离估计误差为20 mm左右。它表明了复杂复合结构损伤成像方法的可接受性能。 (C)2016 Elsevier B.V.保留所有权利。

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