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使用导波层析成像和涡流检测定位和成像 CFRP 中的纤维断裂。

Locating and Imaging Fiber Breaks in CFRP Using Guided Wave Tomography and Eddy Current Testing.

机构信息

Instituto de Telecomunicações, Instituto Superior Técnico, Universidade de Lisboa, 1049-001 Lisbon, Portugal.

出版信息

Sensors (Basel). 2022 Sep 28;22(19):7377. doi: 10.3390/s22197377.

Abstract

In this paper, guided Lamb wave tomography and eddy current testing (ECT) techniques were combined to locate and evaluate fiber breaks in carbon-fiber-reinforced plastic (CFRP) structures. Guided wave testing (GWT) and computed tomography (CT) imaging were employed to quickly locate fiber breaks in the CFRP plate. From B-scans performed along two different fiber orientations (0 and 90 degrees), parallel-beam projections of different features were extracted from the guided wave signals, using signal-processing techniques (such as wavelet and Hilbert transforms) and statistical functions (such as skewness and kurtosis). The parallel-beam projections of each individual feature were used as input in computed tomography imaging reconstruction to approximately estimate the location of fiber breaks. From the obtained reconstructed images, image-fusion techniques were applied to get complementary information from multiple source images into one single image. After locating the fiber breaks, C-scans were performed in the vicinity of the damage, using an ECT probe with double excitation configuration to evaluate the condition of the fiber break.

摘要

本文将导波层析成像和涡流检测(ECT)技术相结合,用于定位和评估碳纤维增强塑料(CFRP)结构中的纤维断裂。导波测试(GWT)和计算机断层扫描(CT)成像用于快速定位 CFRP 板中的纤维断裂。从沿两个不同纤维方向(0 度和 90 度)进行的 B 扫描中,使用信号处理技术(如小波和希尔伯特变换)和统计函数(如偏度和峰度)从导波信号中提取不同特征的平行波束投影。将每个单独特征的平行波束投影用作计算层析成像重建的输入,以近似估计纤维断裂的位置。从获得的重建图像中,应用图像融合技术从多个源图像获取互补信息到一个单一的图像。在定位纤维断裂后,在损伤附近进行 C 扫描,使用具有双激励配置的 ECT 探头来评估纤维断裂的情况。

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