Mechanical and radar absorption properties of sheep wool/epoxy composites

IF 1.2 4区 工程技术 Q3 ENGINEERING, AEROSPACE Aircraft Engineering and Aerospace Technology Pub Date : 2024-04-15 DOI:10.1108/aeat-03-2023-0069
Goksel Saracoglu, Serap Kiriş, Sezer Çoban, Muharrem Karaaslan, Tolga Depci, Emin Bayraktar
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Abstract

Purpose

The aim of this study is to determine the fracture behavior of wool felt and fabric based epoxy composites and their responses to electromagnetic waves.

Design/methodology/approach

Notched and unnotched tensile tests of composites made of wool only and hybridized with a glass fiber layer were carried out, and fracture behavior and toughness at macro scale were determined. They were exposed to electromagnetic waves between 8 and 18 GHz frequencies using two horn antennas.

Findings

The keratin and lignin layer on the surface of the wool felt caused lower values to be obtained compared to the mechanical values given by pure epoxy. However, the use of wool felt in the symmetry layer of the laminated composite material provided higher mechanical values than the composite with glass fiber in the symmetry layer due to the mechanical interlocking it created. The use of wool in fabric form resulted in an increase in the modulus of elasticity, but no change in fracture toughness was observed. As a result of the electromagnetic analysis, it was also seen in the electromagnetic analysis that the transmittance of the materials was high, and the reflectance was low throughout the applied frequency range. Hence, it was concluded that all of the manufactured materials could be used as radome material over a wide band.

Practical implications

Sheep wool is an easy-to-supply and low-cost material. In this paper, it is presented that sheep wool can be evaluated as a biocomposite material and used for radome applications.

Originality/value

The combined evaluation of felt and fabric forms of a natural and inexpensive reinforcing element such as sheep wool and the combined evaluation of fracture mechanics and electromagnetic absorption properties will contribute to the evaluation of biocomposites in aviation.

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绵羊毛/环氧树脂复合材料的机械和雷达吸收特性
本研究旨在确定羊毛毡和织物基环氧树脂复合材料的断裂行为及其对电磁波的响应。对仅由羊毛制成的复合材料和与玻璃纤维层混合制成的复合材料进行了缺口和非缺口拉伸试验,并确定了宏观尺度上的断裂行为和韧性。结果羊毛毡表面的角蛋白和木质素层导致获得的力学值低于纯环氧树脂的力学值。然而,在层压复合材料的对称层中使用羊毛毡,由于其产生的机械互锁作用,其机械值高于在对称层中使用玻璃纤维的复合材料。以织物形式使用羊毛可提高弹性模量,但断裂韧性没有变化。电磁分析的结果还表明,在整个应用频率范围内,材料的透射率高,反射率低。因此,可以得出结论,所有制造的材料都可用作宽频带雷达罩材料。本文介绍了绵羊毛可作为生物复合材料进行评估,并可用于雷达天线罩。原创性/价值对绵羊毛等天然廉价增强元素的毡状和织物状进行综合评估,并对断裂力学和电磁吸收特性进行综合评估,将有助于评估航空中的生物复合材料。
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来源期刊
Aircraft Engineering and Aerospace Technology
Aircraft Engineering and Aerospace Technology 工程技术-工程:宇航
CiteScore
3.20
自引率
13.30%
发文量
168
审稿时长
8 months
期刊介绍: Aircraft Engineering and Aerospace Technology provides a broad coverage of the materials and techniques employed in the aircraft and aerospace industry. Its international perspectives allow readers to keep up to date with current thinking and developments in critical areas such as coping with increasingly overcrowded airways, the development of new materials, recent breakthroughs in navigation technology - and more.
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