首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Optimizing electromagnetic wave absorption performance: Design from microscopic bamboo carbon nanotubes to macroscopic patterns
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Optimizing electromagnetic wave absorption performance: Design from microscopic bamboo carbon nanotubes to macroscopic patterns

机译:优化电磁波吸收性能:从微观竹碳纳米管到宏观图案的设计

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Achieving ideal electromagnetic wave absorbing materials and effective artificial super structures design are increasingly attractive for their irreplaceable role in aerospace stealth structure, Over the Air (OTA) test and civil wireless communication systems. In this work, the bamboo carbon nanotubes (CNTs) were prepared by a simple thermal treatment method. The microstructure and yields of bamboo CNTs were tunable by changing the feeding amounts of polypropylene fabrics precursors. The optimal reflection losses (RL) value of as-prepared bamboo CNTs was up to -54.5 dB at 14.45 GHz with 1.85 mm, meanwhile the effective bandwidth (f(e)) covered from 12.31 to 17.76 GHz. With subsequent macroscopic honeycomb architecture design based on the as-fabricated bamboo CNTs, the artificial structures with variable radius, thickness and height exhibited more than 90% absorption in 8.5-18 GHz. The results suggested that combination of developing microscopic microwave absorbers and macroscopic structure design would fundamentally optimize the electromagnetic wave absorption with low matching thickness and extensive effective bandwidth. (C) 2019 Elsevier B.V. All rights reserved.
机译:实现理想的电磁波吸收材料和有效的人工超结构设计对于它们在航空航天隐身结构中的不可替代作用越来越有吸引力,通过空气(OTA)测试和民用通信系统。在这项工作中,通过简单的热处理方法制备竹碳纳米管(CNT)。通过改变聚丙烯织物前体的进料量来调谐竹制CNT的微观结构和产率。当制备的竹子CNT的最佳反射损失(RL)值高达-54.5dB,14.45GHz,与1.85毫米为1.85毫米,其有效带宽(F(e))涉及12.31至17.76 GHz。随后基于以制造竹CNT的宏观蜂窝架构设计,具有可变半径,厚度和高度的人工结构在8.5-18GHz中表现出超过90%以上的吸收。结果表明,显影微波吸收剂和宏观结构设计的组合将从匹配厚度和广泛的有效带宽的基本上优化电磁波吸收。 (c)2019 Elsevier B.v.保留所有权利。

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