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Dual-Polarized Microwave Near-Field Reflectometer for Non-Invasive Inspection of Carbon Fiber Reinforced Polymer Strengthened Structures

机译:双极化微波近场反射计,用于碳纤维增强聚合物加强结构的非侵入性检查

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Carbon fiber reinforced polymer (CFRP) composites are increasingly being used in strengthening structures of civil infrastructures, aerospace and automotive industries. Subsequent to the application of CFRP, detection and evaluation of the structural integrity of the member becomes a critical issue. Microwave non-invasive inspection techniques have been successfully used for inspecting these structures. A novel inspection system with a dual-polarized microwave near-field waveguide probe for detecting defects such as disbond between CFRP laminates and strengthened structures is presented. It is shown that this system provides automatic removal of the influence of undesired standoff distance (or surface roughness) variations. It may simultaneously generate three images of defects: two at orthogonal polarizations and one after the influence of the undesired variations is removed. The novel measurement system provides for detection and evaluation of different types of defects in CFRP reinforced composite structures, reducing the time required for data acquisition. This paper also presents the design of the dual-polarized reflectometer at X-band (8.2 - 12.4 GHz) and details of the measurement system as well as the results of application of this system for inspecting CFRP reinforced composites cement-based structures including some from an actual bridge. The results clearly illustrate the utility of this system for non-invasive inspection of CFRP strengthened structures.
机译:碳纤维增强的正越来越多地在加强民用基础设施,航空航天和汽车工业的结构中所用聚合物(CFRP)的复合材料。继CFRP,检测和成员的结构完整性评价的应用成为一个关键问题。微波的非侵入性检查技术已成功用于检查这些结构。用于检测诸如CFRP层压板和加强结构之间脱粘缺陷的双极化微波近场波导探针的新型检查系统被呈现。它被示出,该系统提供自动去除不期望的偏离距离(或表面粗糙度)的变化的影响的。它可同时生成的缺陷三个图像:2在正交偏振和一个不希望的变化的影响被移除之后。新颖的测量系统提供了一种用于检测和不同类型的缺陷在碳纤维加固的复合材料结构,从而减少了数据采集所需的时间的评估。本文还介绍了双极化反射计在X波段的设计(8.2 - 12.4千兆赫)和细节上的测量系统的以及该系统用于检查CFRP的应用的结果增强复合材料的水泥基的结构,包括一些从一个实际的桥梁。结果清楚地说明本系统的CFRP的非侵入性的检查的效用加强结构。

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