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Electromagnetic wave absorption and structural properties of wide-band absorber made of graphene-printed glass-fibre composite

机译:石墨烯印刷的玻璃纤维复合材料制成的宽带吸收器的电磁波吸收和结构性能

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摘要

Lightweight composites combining electromagnetic wave absorption and excellent mechanical properties are required in spacecraft and aircraft. A one- dimensional metamaterial absorber consisting of a stack of glass fibre/epoxy layers and graphene nanoplatelets/epoxy films was proposed and fabricated through a facile air-spraying based printing technology and a liquid resin infusion method. The production process allows an optimum dispersion of graphene nanoplatelets, promoting adhesion and mechanical integration of the glass fibre/epoxy layers with the graphene nanoplatelets/epoxy films. According to experimental results, the proposed wide-band absorber provides a reflection coefficient lower than −10 dB in the range 8.5–16.7 GHz and an improvement of flexural modulus of more than 15%, with a total thickness of ∼1 mm. Outstanding electromagnetic wave absorption and mechanical performance make the proposed absorber more competitive in aeronautical and aerospace applications.
机译:航天器和飞机需要兼具电磁波吸收和出色机械性能的轻质复合材料。提出了一种由一维玻璃纤维/环氧树脂层和石墨烯纳米片/环氧树脂薄膜组成的一维超材料吸收剂,并通过一种基于空气喷涂的简便印刷技术和一种液态树脂注入方法来制造。该生产过程允许石墨烯纳米片的最佳分散,从而促进玻璃纤维/环氧树脂层与石墨烯纳米片/环氧树脂膜的粘合和机械结合。根据实验结果,所提出的宽带吸收器在8.5-16.7 GHz范围内的反射系数低于-10 dB,弯曲模量提高了15%以上,总厚度约为1 mm。出色的电磁波吸收和机械性能使所提出的吸收器在航空和航天应用中更具竞争力。

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