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Knitted radar absorbing materials (RAM) based on nickel-cobalt magnetic materials

机译:基于镍钴磁性材料的针织雷达吸收材料(RAM)

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摘要

There has been a long-standing interest in the development of flexible, lightweight, thin, and re-configurable radar absorbing materials (RAM) for military applications such as camouflaging ground-based hardware against airborne radar observation. The use of polymeric Polyacrylonitrile (PAN) fabrics as a host matrix for magnetic metal nano-particles (either at the yarn-stage or after weaving the fabric) for shielding and absorbing applications has been described in the literature. In our experimental investigation, the relative concentrations of Nickel and Cobalt as well as the coating time are varied with a view to optimizing the microwave absorption characteristics of the resulting PAN-based composite material in the radar-frequency bands (X, K_u, and K). It is found that the PAN samples with the shortest coating time have the best return losses (under -20 dB return loss over a moderate bandwidth).
机译:对于用于军事应用的柔性,轻便,薄型和可重新配置的雷达吸收材料(RAM)的开发一直存在着长期的兴趣,例如伪装地面硬件以抵抗机载雷达观测。在文献中已经描述了使用聚合物聚丙烯腈(PAN)织物作为磁性金属纳米颗粒的主体基质(在纱线阶段或在织物编织之后)用于屏蔽和吸收应用。在我们的实验研究中,为了优化所得PAN基复合材料在雷达频段(X,K_u和K)中的微波吸收特性,对镍和钴的相对浓度以及涂覆时间进行了更改。 )。发现涂覆时间最短的PAN样品具有最佳的回波损耗(在中等带宽下回波损耗低于-20 dB)。

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