Sobkiewicz Przemysław, Bieńkowski Paweł, Błażejewski Wojciech
Department of Telecommunications and Teleinformatics, Wroclaw University of Science and Technology, Janiszewskiego 9, 50-370 Wroclaw, Poland.
Department of Mechanics, Materials and Biomedical Engineering, Wroclaw University of Science and Technology, Smoluchowskiego 25, 50-370 Wroclaw, Poland.
Sensors (Basel). 2021 Jun 17;21(12):4168. doi: 10.3390/s21124168.
Microwave imaging and defectoscopy are promising techniques for dielectric composite evaluation. Their most significant advantage is their relatively high penetration depth. Another feature worth noting is that traditional methods could not acquire an internal content with such a low impact on both the sample and surrounding environment, including the test operator, compared to other techniques. This paper presents microwave non-destructive and noninvasive methods for quality evaluation of layered composite materials using an open-ended waveguide probe. Pure || parameters only exceptionally give a clear answer about the location of material cracks. Therefore, this makes it necessary to analyze these parameters simultaneously along with several other factors, such as stand-off distance, probe type or wave polarization. The purpose of the work was to find the dependency between the physical state of a layered composite powerplant pipeline and the S-matrix parameters response (reflection and transmission parameters) in a Ku frequency band that has not yet been extensively researched. Lower-frequency measurements broaden the application possibility for thicker composites, mainly because of a higher penetration depth and measurement setup availability. Different methods have been shown, including reflection and transmission/reflection methods, both in close proximity and in stand-off distance. The measurements are based on a low-complexity experimental setup.
微波成像和探伤技术是用于评估介电复合材料的很有前景的技术。它们最显著的优点是其相对较高的穿透深度。另一个值得注意的特点是,与其他技术相比,传统方法在对样品和周围环境(包括测试操作人员)影响如此小的情况下无法获取内部信息。本文介绍了一种使用开口波导探头对层状复合材料进行质量评估的微波无损和非侵入性方法。纯||参数仅在极少数情况下能明确给出材料裂纹的位置。因此,有必要将这些参数与其他几个因素同时进行分析,如探头与样品的间距、探头类型或波的极化。这项工作的目的是找出层状复合动力装置管道的物理状态与Ku频段中尚未得到广泛研究的S矩阵参数响应(反射和传输参数)之间的依赖关系。低频测量拓宽了较厚复合材料的应用可能性,主要是因为穿透深度更大且测量装置更易获得。文中展示了不同的方法,包括近距离和远距离的反射法以及传输/反射法。这些测量基于一个低复杂度的实验装置。