Delamination Detection in Glass-Fibre Reinforced Polymer (GFRP) Using Microwave Time Domain Reflectometry

M. F. Akbar, G. Jawad, L. Danoon, R. Sloan
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引用次数: 13

Abstract

Glass Fibre Reinforced Polymer (GFRP) is an important material that is used in different engineering applications, such as the rehabilitation of structures. However, delamination can occur between GFRP laminates and the metallic surfaces to which they are applied. The existence of such defects can cause major failures and compromise the integrity of the entire component. Hence, delamination detection is extremely important to maintain the integrity of any component that involves GFRP laminate. The unique layered nature of the GFRP material in terms of dielectric properties renders most Non-Destructive Testing/Evaluation (NDT/E) techniques inadequate to detect its delamination. However, microwave NDT/E can be regarded as an excellent choice for such purpose due to the ability of microwave signals to penetrate GFRP structures and detect the changes in their internal structures.This paper proposes a novel microwave NDT/E technique that uses Fourier analysis to analyze the reflections from a GFRP structure in the time domain. By scanning a back-drilled GFRP sample within the frequency range of 18 to 26.5 GHz, the proposed technique has proved to detect delamination thicknesses down to 1 mm. The technology reported in this paper represents a significant advance in the efforts to solve the currently challenging task of inspecting GFRP laminates for defects.
微波时域反射法检测玻璃纤维增强聚合物(GFRP)的分层
玻璃纤维增强聚合物(GFRP)是一种重要的材料,用于不同的工程应用,如结构修复。然而,在玻璃钢层压板和应用它们的金属表面之间可能发生分层。这些缺陷的存在可能导致重大故障,并危及整个组件的完整性。因此,分层检测对于保持任何涉及玻璃钢层压的组件的完整性至关重要。GFRP材料在介电性能方面独特的层状特性使得大多数无损检测/评估(NDT/E)技术不足以检测其分层。而微波无损检测/电子检测是实现这一目的的绝佳选择,因为微波信号能够穿透GFRP结构,探测到其内部结构的变化。本文提出了一种新的微波无损检测/电子检测技术,该技术使用傅里叶分析来分析玻璃钢结构在时域上的反射。通过在18至26.5 GHz的频率范围内扫描后钻的GFRP样品,该技术已被证明可以检测到低至1毫米的分层厚度。本文报道的技术在解决目前具有挑战性的玻璃钢层合板缺陷检测工作方面取得了重大进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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