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Design and verification of simultaneously self-sensing and microwave-absorbing composite structures based on embedded SiC fiber network

机译:基于嵌入式SiC光纤网络的同时自感应和微波吸收复合结构的设计与验证

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摘要

Silicon carbide (SiC) fibers can act not only as a load-bearing component, but also as a piezoresistive and microwave lossy material when embedded in fiber-reinforced polymer composites. By leveraging these multifunctional characteristics, we propose simultaneous self-sensing and microwave-absorbing composite structures based on embedded SiC fiber networks. A SiC fiber network consists of SiC fiber yarns embedded in each interlaminar of the host composite at regular intervals. The SiC fiber yarns, which do not come into contact with other SiC fiber yarns, act as independent sensing elements using their piezoresistivity. By positioning the SiC fiber yarns at regular intervals within the wavelength of the targeted microwave-absorption bandwidth, the SiC fiber network functions as a microwave lossy material. In this study, specific focus has been placed on designing a multi-functional composite that senses external impacts and also absorbs microwaves in the X-band (8.2 -12.4 GHz). The simultaneous self-sensing and microwave-absorbing performance of the fabricated SiC-embedded composite was experimentally verified through microwave return loss measurements and dynamic signal acquisition tests. The proposed SiC fiber network-embedded composite structure has great potential for use in future aerospace structures.
机译:碳化硅(SiC)纤维不仅可以用作承载部件,而且在嵌入纤维增强的聚合物复合材料时也可以作为压阻和微波损耗材料。通过利用这些多功能特性,我们提出了基于嵌入式SiC光纤网络的同时自感应和微波吸收复合结构。 SIC光纤网络由嵌入在主体复合材料的每个InterlaMar的SiC纤维纱线定期。不与其他SiC纤维纱线接触的SiC纤维纱线,用它们的压阻率充当独立的感测元件。通过在目标微波吸收带宽的波长内定期定期定期定期定期定期定位SiC光纤纱线,SiC光纤网络用作微波损耗材料。在这项研究中,已经在设计一种多功能复合材料上进行了特定的重点,这些复合材料感测了外部冲击,并且还吸收X波段中的微波(8.2 -12.4 GHz)。通过微波回波损耗测量和动态信号采集测试通过微波返回损耗测量进行实验验证制造的SiC嵌入式复合材料的同时自感应和微波吸收性能。所提出的SIC纤维网嵌入式复合结构具有很大的应用潜力,可在未来的航空航天结构中使用。

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