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基于无模型空间波数滤波器的飞机复合材料结构冲击成像

Impact imaging of aircraft composite structure based on a model-independent spatial-wavenumber filter.

作者信息

Qiu Lei, Liu Bin, Yuan Shenfang, Su Zhongqing

机构信息

State Key Lab of Mechanics and Control of Mechanical Structures, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, China; Department of Mechanical Engineering, The Hong Kong Polytechnic University, Kowloon, Hong Kong.

State Key Lab of Mechanics and Control of Mechanical Structures, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, China; Department of Air Force Military Transportation, Air Force Service College, Xuzhou 221000, China.

出版信息

Ultrasonics. 2016 Jan;64:10-24. doi: 10.1016/j.ultras.2015.07.006. Epub 2015 Jul 29.

Abstract

The spatial-wavenumber filtering technique is an effective approach to distinguish the propagating direction and wave mode of Lamb wave in spatial-wavenumber domain. Therefore, it has been gradually studied for damage evaluation in recent years. But for on-line impact monitoring in practical application, the main problem is how to realize the spatial-wavenumber filtering of impact signal when the wavenumber of high spatial resolution cannot be measured or the accurate wavenumber curve cannot be modeled. In this paper, a new model-independent spatial-wavenumber filter based impact imaging method is proposed. In this method, a 2D cross-shaped array constructed by two linear piezoelectric (PZT) sensor arrays is used to acquire impact signal on-line. The continuous complex Shannon wavelet transform is adopted to extract the frequency narrowband signals from the frequency wideband impact response signals of the PZT sensors. A model-independent spatial-wavenumber filter is designed based on the spatial-wavenumber filtering technique. Based on the designed filter, a wavenumber searching and best match mechanism is proposed to implement the spatial-wavenumber filtering of the frequency narrowband signals without modeling, which can be used to obtain a wavenumber-time image of the impact relative to a linear PZT sensor array. By using the two wavenumber-time images of the 2D cross-shaped array, the impact direction can be estimated without blind angle. The impact distance relative to the 2D cross-shaped array can be calculated by using the difference of time-of-flight between the frequency narrowband signals of two different central frequencies and the corresponding group velocities. The validations performed on a carbon fiber composite laminate plate and an aircraft composite oil tank show a good impact localization accuracy of the model-independent spatial-wavenumber filter based impact imaging method.

摘要

空间波数滤波技术是在空间波数域中区分兰姆波传播方向和波模式的有效方法。因此,近年来它已逐渐被用于损伤评估研究。但在实际应用中的在线冲击监测方面,主要问题是当无法测量高空间分辨率的波数或无法对精确的波数曲线进行建模时,如何实现冲击信号的空间波数滤波。本文提出了一种基于与模型无关的空间波数滤波器的冲击成像方法。在该方法中,使用由两个线性压电(PZT)传感器阵列构成的二维十字形阵列在线采集冲击信号。采用连续复香农小波变换从PZT传感器的频率宽带冲击响应信号中提取频率窄带信号。基于空间波数滤波技术设计了一种与模型无关的空间波数滤波器。基于所设计的滤波器,提出了一种波数搜索和最佳匹配机制,以在无需建模的情况下实现频率窄带信号的空间波数滤波,可用于获取相对于线性PZT传感器阵列的冲击波数 - 时间图像。通过使用二维十字形阵列的两个波数 - 时间图像,可以无盲区地估计冲击方向。利用两个不同中心频率的频率窄带信号之间的飞行时间差和相应的群速度,可以计算出相对于二维十字形阵列的冲击距离。在碳纤维复合层压板和飞机复合油箱上进行的验证表明,基于与模型无关的空间波数滤波器的冲击成像方法具有良好的冲击定位精度。

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