结合不同导波传播方式产生的图像用于板状结构损伤检测和对比度提高的技术

Vander Teixeira Prado, Ricardo Tokio Higuti, C. Kitano, Ó. Martínez-Graullera, Julio Cezar Adamowski
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引用次数: 3

摘要

本文介绍了一种基于利用不同的apodization函数,对Lamb波与缺陷的不同传播模式相互作用的信号相位和信息进行评估的图像复合技术,以提高损伤检测、分辨率和对比度。将一个16元线性阵列连接在1毫米厚的各向同性人工缺陷铝板上。该阵列可以分别在100 kHz和360 kHz的频率激发A0和S0基模。对于每种模式,分别得到2张均匀和Blackman化的合成孔径(SA)图像和1张相干因子图(CFM)图像。不同的传播模式与缺陷之间的特定相互作用以及由于不同的消光功能而产生的声辐射图形特性导致图像的分辨率和对比度不同。从相位信息中,在每个像素处选择一张SA图像来复合最终图像。将SA图像与CFM图像相乘以提高对比度,并对色散A0模式采用色散补偿技术。对比度提高了47.5 dB,减少了死区,提高了分辨率和损伤检测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Technique to combine images produced by different propagation modes of guided waves for damage detection and contrast improvement in plate-like structures
This paper describes an image compounding technique based on the use of different apodization functions, the evaluation of the signals phases and information from the interaction of different propagation modes of Lamb waves with defects for enhanced damage detection, resolution and contrast. A 16 elements linear array is attached to a 1 mm thickness isotropic aluminum plate with artificial defects. The array can excite the fundamental A0 and S0 modes at the frequencies of 100 kHz and 360 kHz, respectively. For each mode two synthetic aperture (SA) images with uniform and Blackman apodization and one image of Coherence Factor Map (CFM) are obtained. The specific interaction between each propagation mode and the defects and the characteristics of acoustic radiation patterns due to different apodization functions result in images with different resolution and contrast. From the phase information one of the SA images is selected at each pixel to compound the final image. The SA images are multiplied by the CFM image to improve contrast and for the dispersive A0 mode it is used a technique for dispersion compensation. There is a contrast improvement of 47.5 dB, reducing the dead zone and improving resolution and damage detection.
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