Affiliation:
1. School of Mechanical and Electronic Engineering, Wuhan University of Technology, Wuhan 430070, China
2. Institute of Advanced Material and Manufacturing Technology, Wuhan University of Technology, Wuhan 430070, China
3. Hubei Provincial Engineering Technology Research Center for Magnetic Suspension, Wuhan 430070, China
Abstract
Terahertz (THz) non-destructive testing can detect internal defects in dielectric materials. However, this technology is mainly used for detecting thin and simple structures at present, lacking validations for the detection effectiveness of internal defects in thicker and more complex structures, such as fiber-web-reinforced composite sandwich panels. In this study, samples of fiber-web-reinforced polymethacrylimide foam sandwich panels, which are, respectively, 20 mm and 30 mm thick, were made to detect the internal debonding, inclusion, pore, and crack defects by the THz time-domain spectroscopy system (THz-TDS). The peak-to-peak-imaging algorithm, maximum-amplitude-imaging algorithm, minimum-amplitude-imaging algorithm, pulse-width-imaging algorithm, and time-of-flight-imaging algorithm were used to process and image the collected THz signals. The results showed that the peak-to-peak-imaging algorithm had the best performance. To address the low imaging resolution of THz-TDS, a block-based super-resolution reconstruction method—SSSRGAN—is proposed, which can improve image resolution while maintaining the clear edge contours of defects. The defect-detection results of the samples showed that THz-TDS could detect all pore, debonding, and crack defects, with a minimum size of 3 mm for pores and debonding and a minimum thickness of 1 mm for cracks. The method showed poor detection performance for inclusions with a thickness of 0.053 mm, but could still extract the defect features. Based on the THz-TDS reflection mode measurement principle, the thickness information of the panel, foam core, and web of the samples was calculated: the measurement error was no more than 0.870 mm for Sample #1 and no more than 0.270 mm for Sample #2, demonstrating the accuracy of THz-TDS in measuring the dimensions of sandwich panel structures. In general, THz technology shows potential for detecting internal defects and performing dimensional measurements in complex structures. With the advancement of portable devices and enhancements in detection speed, real-time on-site detection is anticipated in the future.
Funder
Major Program(JD) of Hubei Province
National Natural Science Foundation of China
Reference33 articles.
1. A review of the present and future utilisation of FRP composites in the civil infrastructure with reference to their important in-service properties;Hollaway;Constr. Build. Mater.,2010
2. Structural concept, design, and experimental verification of a glass fiber-reinforced polymer sandwich roof structure;Keller;J. Compos. Constr.,2008
3. Li, F., Zeng, J., and Qiao, L. (2020). Lattice-Web Reinforced Composite Sandwich Structure, Science Press.
4. Theoretical and experimental study of foam-filled lattice composite panels under quasi-static compression loading;Wu;Compos. Part. B Eng.,2014
5. Flexural behavior of composite concrete slabs reinforced by FRP grid facesheets;Fang;Compos. Part. B Eng.,2016
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