分层(地质)
纤维增强塑料
无损检测
材料科学
可视化
微波食品加热
表征(材料科学)
光学
计算机科学
声学
复合材料
人工智能
电信
纳米技术
医学
俯冲
构造学
生物
物理
放射科
古生物学
作者
Xihan Yang,Fang Yang,Ruonan Wang,Yong Li,Zhenmao Chen
出处
期刊:Sensors
[Multidisciplinary Digital Publishing Institute]
日期:2023-07-13
卷期号:23 (14): 6386-6386
被引量:5
摘要
Glass Fiber reinforced polymers (GFRPs) are widely used and play an important role in modern society. The multilayer structure of GFRPs can lead to delamination defects during production and service, which can have a significant impact on the integrity and safety of the equipment. Therefore, it is important to monitor these delamination defects during equipment service in order to evaluate their effects on equipment performance and lifespan. Microwave imaging testing, with its high sensitivity and noncontact nature, shows promise as a potential method for detecting delamination defects in GFRPs. However, there is currently limited research on the quantitative characterization of defect images in this field. In order to achieve visual quantitative nondestructive testing (NDT), we propose a 2D-imaging visualization and quantitative characterization method for delamination defects in GFRP, and realize the combination of visual detection and quantitative detection. We built a microwave testing experimental system to verify the effectiveness of the proposed method. The results of the experiment indicate the effectiveness and innovation of the method, which can effectively detect all delamination defects of 0.5 mm thickness inside GFRP with high accuracy, the signal-to-background ratio (SBR) of 2D imaging can reach 4.41 dB, the quantitative error of position is within 0.5 mm, and the relative error of area is within 11%.
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