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首页> 外文期刊>Structural health monitoring >Barely visible impact damage imaging using non-contact air-coupled transducer/laser Doppler vibrometer system
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Barely visible impact damage imaging using non-contact air-coupled transducer/laser Doppler vibrometer system

机译:使用非接触式空气耦合换能器/激光多普勒振动计系统进行几乎看不见的冲击损伤成像

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摘要

The aim of this study is to investigate the capability of the zero-lag cross-correlation imaging condition of an A(0) Lamb wave mode in imaging a barely visible impact damage in a carbon fiber-reinforced polymer composite using a fully non-contact-guided wave-based non-destructive inspection system. A 16-ply (45/0/-45/90)(2s) carbon fiber-reinforced polymer laminate was impacted at three different locations with different impact energies using a drop ball at three drop heights causing three barely visible impact damages with different sizes. The A(0) Lamb wave mode is generated inside the laminate using a circular air-coupled transducer and detected along the damaged region using a laser Doppler vibrometer. The measured wavefield is then decomposed into a forward and backward propagating wavefields by applying a frequency-wavenumber filtering post-processing technique. The decomposed wavefields are then cross-correlated in the frequency domain using zero-lag cross-correlation imaging condition producing a detailed cumulative damage image. The images obtained in frequency domain highlight the three damaged areas with higher zero-lag cross-correlation values compared to other parts of the inspected areas. The experimental investigation has shown a good correlation between the zero-lag cross-correlation imaging condition and C-scan images, which demonstrate a strong capability of guided wave zero-lag cross-correlation imaging condition technique in approximating the location and size of relatively small barely visible impact damages in thin composite structures.
机译:这项研究的目的是研究A(0)Lamb波模式的零延迟互相关成像条件在使用完全非接触式成像对碳纤维增强的聚合物复合材料中几乎看不见的冲击损伤进行成像的能力导波基无损检测系统。使用三个落差高度的落球将16层(45/0 / -45 / 90)(2s)碳纤维增强的聚合物层压板在三个不同的位置以不同的冲击能量撞击,造成三个几乎看不见的不同尺寸的冲击损伤。使用圆形空气耦合传感器在层压板内部生成A(0)兰姆波模式,并使用激光多普勒振动计沿损坏区域进行检测。然后,通过应用频率-波数滤波后处理技术,将测得的波场分解为向前和向后传播的波场。然后,使用零延迟互相关成像条件在频率域中对分解后的波场进行互相关,从而生成详细的累积损伤图像。与检查区域的其他部分相比,在频域中获得的图像突出显示了三个损坏区域,具有零滞后互相关值。实验研究表明零延迟互相关成像条件与C扫描图像之间具有良好的相关性,这表明导波零延迟互相关成像条件技术在逼近相对较小的位置和尺寸方面具有很强的能力。薄的复合结构几乎看不到冲击破坏。

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