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首页> 外文期刊>Composite Structures >A laser arrays scan thermography (LAsST) for the rapid inspection of CFRP composite with subsurface defects
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A laser arrays scan thermography (LAsST) for the rapid inspection of CFRP composite with subsurface defects

机译:激光阵列扫描热成像(LAsST)用于快速检测具有表面缺陷的CFRP复合材料

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摘要

Laser arrays scan thermography (LAsST) as a nondestructive testing and evaluation (NDT&E) tool is presented to detect the subsurface delamination or abnormally of carbon fiber reinforced polymer (CFRP) composite. A series of woven CFRP specimens with artificial bottom flat holes (BFHs) are prepared for NDT&E by LAsST. The thermal response signal was reconstructed and in turn appeared the analogous thermal responsible behavior similar to pulsed thermography (PT). The thermal response signal was processed by using of Fast Fourier transform (FFT) and principal component analysis (PCA), and FFT amplitude and phase images, PCA image were formed. The signal noise ratios (SNRs) of defects were calculated and employed to evaluate the defect detectability of different post processing algorithms. A likeness optical flow (LOF) approach was proposed to reduce the interruption of lateral thermal diffusion and improve the defect detectability. The experimental results indicate that FFT phase based image shows a relatively high SNR, and the LOF method effectively enlarged the SNRs of defects.
机译:激光阵列扫描热成像(LAsST)作为一种非破坏性测试和评估(NDT&E)工具,用于检测碳纤维增强聚合物(CFRP)复合材料的表面下分层或异常情况。 LAsST为NDT&E准备了一系列带有人造底部平孔(BFH)的编织CFRP标本。重建了热响应信号,继而出现了类似于脉冲热成像(PT)的类似热负责行为。通过快速傅立叶变换(FFT)和主成分分析(PCA)处理热响应信号,并形成FFT幅值和相位图像,PCA图像。计算缺陷的信号噪声比(SNR),并将其用于评估不同后处理算法的缺陷可检测性。提出了一种相似光流(LOF)方法,以减少横向热扩散的中断并提高缺陷的可检测性。实验结果表明,基于FFT相位的图像显示出较高的SNR,而LOF方法有效地扩大了缺陷的SNR。

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