4.3 Article

Microwave absorption performance of hexagonal nano boron nitride doped basalt fabric-reinforced epoxy composites

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EMERALD GROUP PUBLISHING LTD
DOI: 10.1108/AEAT-06-2020-0126

关键词

Basalt fabric; Hexagonal nano boron nitride; Microwave absorption

资金

  1. TuBTAK (The Scientific and Technological Research Council of Turkey) [219M018]

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This study investigates the effect of doping element on the microwave absorption performance of hexagonal nano boron nitride (h-nBN)-reinforced basalt fabric (BF)/epoxy composites. Experimental results show that the h-nBN doped composite has good absorption behavior when used with metallic sheets in the 3-18 GHz band, making it suitable for isolation applications at multiple points. The study contributes to the understanding of the radar absorption properties of composite materials using basalt fabric and hexagonal nano boron nitride.
Purpose The purpose of this paper is to investigate the effect of doping element on the microwave absorption performance of hexagonal nano boron nitride (h-nBN)-reinforced basalt fabric (BF)/epoxy composites. A new type of hybrid composite that will be produced by the use of boron nitride as an additive that leads to increased radar absorption capability will be developed and a new material that can be used in aeronautical radar applications. Design/methodology/approach This study is focused on the microwave absorption properties of h-nBN doped basalt fabric-reinforced epoxy composites. Basalt fabric (BF)/epoxy composites (pure composites) and the BF/h-nBN (1 Wt.% h-nBN doped composites) hybrid composites were fabricated by vacuum infusion method. Phase identification of the composites were performed using X-ray diffraction (XRD), the 2 theta scan range was from 10 to 60 with the scanning speed of 3 degrees/min and surface morphologies of the composites were investigated using scanning electron microscopy (SEM). Microwave properties of samples were investigated through transmission/reflection measurements in Agilent brand 2-Port PNA-L Network Analyzer in the frequency range of 3-18 GHz. The prepared sample is positioned between two horn antennas with and without metal plate. Findings Experimental results show that h-nBN doped composite was synthesized successfully and the produced hexagonal nano boron nitride-added fiber laminated composite material has good absorption behavior when they are used with metallic sheets and good for isolation applications at many points in the 3-18 GHz band. Originality/value This paper will contribute to the literature on the use of basalt fabric, which are new types of fibers, and hexagonal nano boron nitride and the effects of boron nitride on radar absorption properties of composite material. It presents detail characterization of each composite by using XRD and scanning electron microscopy.

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