热成像
超声波传感器
超声波检测
无损检测
材料科学
纤维增强塑料
图像处理
计算机科学
MATLAB语言
声学
复合材料
图像(数学)
人工智能
光学
物理
放射科
红外线的
操作系统
医学
作者
A. Pirinu,Andrea Saponaro,R. Nobile,F.W. Panella
标识
DOI:10.1007/s40799-023-00661-1
摘要
Abstract Composite sandwich structures are widely used for their mechanical properties combined to lightweight. However, damage area quantification caused by low velocity impacts represents generally a crucial task in sandwich composites. In the last years, recent advantages of thermographic devices offer new promising and different real-time industrial and engineering applications where lower computation time, accuracy of results and convenient cost are required. The present research deals with the comparison of standard or latest image-processing methods proposed for pulsed thermography regarding their suitability for determining the impact damage area in sandwich materials made of Aluminium core an a GFRP laminated skins. The Infra-Red processed results are compared with the advanced ultrasonic Phased array method commonly employed in the industrial Non-Destructive Testing. Specifically, the damage area quantification is performed by means of an appropriate MATLAB binarization algorithm for the post-processing of acquired thermal and ultrasonic maps. The data results verify the effectiveness of the image-processing thermographic technique combined to advanced processing approaches for the quantitative assessment of impact damage in sandwich component.
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