Low-Velocity Impact Damage Quantification on Sandwich Panels by Thermographic and Ultrasonic Procedures

IF 1.5 4区 工程技术 Q3 ENGINEERING, MECHANICAL
A. Pirinu, A. Saponaro, R. Nobile, F. W. Panella
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引用次数: 0

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.

Abstract Image

通过热成像和超声波程序量化三明治夹芯板上的低速冲击损伤
复合材料夹层结构因其机械性能和轻质特点而得到广泛应用。然而,在夹层复合材料中,低速冲击造成的损伤面积量化通常是一项关键任务。近年来,热成像设备的最新优势为实时工业和工程应用提供了新的发展前景,这些应用要求计算时间短、结果准确且成本低廉。本研究比较了为脉冲热成像提出的标准或最新图像处理方法,这些方法适用于确定由铝芯和 GFRP 层压表皮组成的夹层材料的冲击损伤区域。红外线处理结果与工业无损检测中常用的先进超声相控阵方法进行了比较。具体来说,通过适当的 MATLAB 二值化算法对获取的热图和超声波图进行后处理,对损伤区域进行量化。数据结果验证了将图像处理热成像技术与先进的处理方法相结合,对夹层部件的冲击损伤进行定量评估的有效性。
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来源期刊
Experimental Techniques
Experimental Techniques 工程技术-材料科学:表征与测试
CiteScore
3.50
自引率
6.20%
发文量
88
审稿时长
5.2 months
期刊介绍: Experimental Techniques is a bimonthly interdisciplinary publication of the Society for Experimental Mechanics focusing on the development, application and tutorial of experimental mechanics techniques. The purpose for Experimental Techniques is to promote pedagogical, technical and practical advancements in experimental mechanics while supporting the Society''s mission and commitment to interdisciplinary application, research and development, education, and active promotion of experimental methods to: - Increase the knowledge of physical phenomena - Further the understanding of the behavior of materials, structures, and systems - Provide the necessary physical observations necessary to improve and assess new analytical and computational approaches.
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