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Characteristics of silicon carbide fiber-reinforced composite for microwave absorbing structures

机译:用于微波吸收结构的碳化硅纤维增强复合材料的特性

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A microwave-absorbing structure is a multifunctional composite composed of lossy materials, to obtain optimal electromagnetic properties combined with structural load-bearing capability. Microwave energy-loss properties can be obtained by modifying the matrix with a lossy filler, or by using a reinforcing fiber with lossy characteristics. The silicon carbide fiber is a conventional semi-conductive fiber that can cause microwave-energy loss, and can comprise a composite material by using a general resin system without lossy additives. This study investigated the mechanical and electromagnetic properties of SiC/epoxy composites, and the performance of microwave-absorbing structures composed of the SiC/epoxy. The fiber volume fraction and tensile properties of a SiC/epoxy composite cured at 6.0 bar were measured. Electromagnetic properties of SiC/epoxy composites cured at different pressures from 7.0 bar to 3.5 bar were measured in addition. Single-slab and multi-slab absorbers were fabricated, and their performance was evaluated. The −10-dB bandwidth and the minimum return loss of the four-slab absorber were 3.4 GHz and −31.0 dB, respectively.An analysis of the SiC/epoxy-composite characteristics indicated that it had excellent workability and mechanical-property advantages, although the performance of the SiC/epoxy microwave absorber was ordinary.
机译:微波吸收结构是一种由有损耗材料组成的多功能复合材料,具有最佳的电磁性能和结构承载能力。微波能量损失特性可以通过使用有损填料改性基质或使用具有损耗特性的增强纤维来获得。碳化硅纤维是会引起微波能量损失的常规半导体纤维,并且可通过使用普通的树脂体系而包含无损耗添加剂的复合材料来构成。这项研究调查了SiC /环氧树脂复合材料的机械和电磁性能,以及由SiC /环氧树脂组成的微波吸收结构的性能。测量了在6.0 bar下固化的SiC /环氧树脂复合材料的纤维体积分数和拉伸性能。此外,还测量了在7.0 bar至3.5 bar的不同压力下固化的SiC /环氧树脂复合材料的电磁性能。制作了单板和多板吸收器,并对其性能进行了评估。四板式吸收器的-10dB带宽和最小回波损耗分别为3.4 GHz和-31.0 dB。对SiC /环氧复合材料的特性分析表明,尽管具有出色的可加工性和机械性能优势, SiC /环氧微波吸收剂的性能很普通。

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