Nondestructive damage evaluation of composites based on terahertz and X-ray image fusion

IF 4.1 2区 材料科学 Q1 MATERIALS SCIENCE, CHARACTERIZATION & TESTING
Jie Wang , Tuo Xu , Li Zhang , Tianying Chang , Jin Zhang , Shihan Yan , Hong-Liang Cui
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引用次数: 11

Abstract

Inspection of thin and multi-depth delamination and foreign inclusion defects inside glass fiber reinforced polymer (GFRP) composites is a challenge for traditional non-destructive testing (NDT) techniques. Terahertz (THz) and X-ray computed tomography (CT) are two prevalent NDT methods, which also have their unique advantages and relative weakness individually. Specifically, in our previous study, it is found that THz NDT method has a higher contrast and X-ray CT NDT method has a higher resolution for detecting defects in GFRP composites. In this paper, a new fusion algorithm applied to the THz and X-ray CT NDT imaging data, based on the combination of saliency region analysis (SRA) and wavelet based multi-scale transforms (W-MST) is proposed to detect delamination and inclusion defects of GFRP composites. Moreover, the strategy of weighted least square optimization (WLSO) is adopted to eliminate the effects of unregistered images. An exhaustive number of combinations (36 in total) of the proposed fusion algorithm, which include the selection of fusion rules for saliency map, wavelet decomposition levels and wavelet basis functions, have been quantitively compared using objective evaluation indices such as standard deviation (SD) and spatial frequency (SF) to quantify the improvement of detection effect in terms of contrast and resolution. Among them, there are five optimal combinations applicable to five pairs of different source images, and the averages of the SD and SF indicators of fused images have increased by 126% and 190% compared with the source images, respectively. The inspection efficacy of defects using the proposed fusion method has been analyzed visually, showing that the new approach can effectively accentuate the complementary advantages of THz and X-ray NDT methods, resulting in quantifiably improved defect inspections.

基于太赫兹和x射线图像融合的复合材料无损损伤评价
玻璃纤维增强聚合物(GFRP)复合材料内部薄层和多深度分层和异物夹杂缺陷的检测是传统无损检测技术面临的挑战。太赫兹(THz)和x射线计算机断层扫描(CT)是两种流行的无损检测方法,它们各自有其独特的优点和相对的缺点。具体来说,在我们之前的研究中,我们发现太赫兹无损检测方法对于GFRP复合材料的缺陷检测具有更高的对比度,x射线CT无损检测方法具有更高的分辨率。本文提出了一种基于显著区分析(SRA)和小波多尺度变换(W-MST)相结合的太赫兹和x射线CT无损检测数据融合算法,用于检测GFRP复合材料的分层和夹杂缺陷。此外,采用加权最小二乘优化(WLSO)策略消除未配准图像的影响。采用标准偏差(SD)和空间频率(SF)等客观评价指标,对所提出的融合算法的36种组合(包括显著性图融合规则的选择、小波分解层次和小波基函数)进行了定量比较,量化了检测效果在对比度和分辨率方面的提高。其中,有5个最优组合适用于5对不同的源图像,融合后图像的SD和SF指标的平均值分别比源图像提高了126%和190%。利用该融合方法对缺陷的检测效果进行了可视化分析,表明新方法可以有效地突出太赫兹和x射线无损检测方法的互补优势,从而定量地提高缺陷检测。
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来源期刊
Ndt & E International
Ndt & E International 工程技术-材料科学:表征与测试
CiteScore
7.20
自引率
9.50%
发文量
121
审稿时长
55 days
期刊介绍: NDT&E international publishes peer-reviewed results of original research and development in all categories of the fields of nondestructive testing and evaluation including ultrasonics, electromagnetics, radiography, optical and thermal methods. In addition to traditional NDE topics, the emerging technology area of inspection of civil structures and materials is also emphasized. The journal publishes original papers on research and development of new inspection techniques and methods, as well as on novel and innovative applications of established methods. Papers on NDE sensors and their applications both for inspection and process control, as well as papers describing novel NDE systems for structural health monitoring and their performance in industrial settings are also considered. Other regular features include international news, new equipment and a calendar of forthcoming worldwide meetings. This journal is listed in Current Contents.
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