Electrical Engineering and Computer Science Department, Khalifa University of Science and Technology, Abu Dhabi P.O. Box 127788, United Arab Emirates.
Department of Aerospace Engineering, Khalifa University of Science and Technology, Abu Dhabi P.O. Box 127788, United Arab Emirates.
Sensors (Basel). 2023 Mar 17;23(6):3200. doi: 10.3390/s23063200.
The integration of antennas in composite structures is gaining popularity with advances in wireless communications and the ever-increasing demands for efficient smart structures. Efforts are ongoing to ensure that antenna-embedded composite structures are robust and resilient to inevitable impacts, loading and other external factors that threaten the structural integrity of these structures. Undoubtedly, the in situ inspection of such structures to identify anomalies and predict failures is required. In this paper, the microwave non-destructive testing (NDT) of antenna-embedded composite structures is introduced for the first time. The objective is accomplished using a planar resonator probe operating in the UHF frequency range (~525 MHz). High-resolution images of a C-band patch antenna fabricated on an aramid paper-based honeycomb substrate and covered with a glass fiber reinforced polymer (GFRP) sheet are presented. The imaging prowess of microwave NDT and its distinct advantages in inspecting such structures are highlighted. The qualitative as well as the quantitative evaluation of the images produced by the planar resonator probe and a conventional K-band rectangular aperture probe are included. Overall, the potential utility of microwave NDT for the inspection of smart structures is demonstrated.
天线在复合材料结构中的集成随着无线通信的发展和对高效智能结构的需求不断增加而变得越来越流行。人们正在努力确保嵌入天线的复合材料结构具有鲁棒性和弹性,以应对不可避免的冲击、负载和其他威胁这些结构结构完整性的外部因素。毫无疑问,需要对这些结构进行原位检查以识别异常和预测故障。本文首次介绍了用于天线嵌入复合材料结构的微波无损检测 (NDT)。这一目标是通过在 UHF 频率范围内(约 525 MHz)工作的平面谐振器探头来实现的。本文展示了在芳纶纸基蜂窝基板上制造的 C 波段贴片天线的高分辨率图像,并用玻璃纤维增强聚合物 (GFRP) 板进行了覆盖。强调了微波 NDT 的成像能力及其在检查此类结构方面的独特优势。包括平面谐振器探头和传统 K 波段矩形孔径探头产生的图像的定性和定量评估。总体而言,微波 NDT 在智能结构检查中的潜在应用得到了证明。