材料科学
螺旋(铁路)
衰减
纳米颗粒
反射损耗
吸收(声学)
宽带
碳纤维
散射
纳米技术
磁性纳米粒子
光电子学
磁场
电磁辐射
纤维
工作(物理)
带宽(计算)
复合材料
光纤
光学
反射(计算机编程)
材料设计
吸收效率
电磁场
电磁学
插入损耗
碳纳米管
作者
Bo Jiang,Bo Long,Si Chen,Qingguo Li,Chao Zhang,Jin-Cheng Ma,Yaming Zhuang,Ya‐Ke Yang,Si‐Yi Lin,Yunyun Li
出处
期刊:Rare Metals
[Springer Science+Business Media]
日期:2025-09-15
卷期号:44 (12): 10580-10593
标识
DOI:10.1007/s12598-025-03594-3
摘要
Abstract Although carbon fiber electromagnetic wave absorbing materials have shown great potential in the field of electromagnetic protection, the currently reported carbon fiber‐based absorbers are limited to the manipulation of composition and external structure, lacking the design of intrinsic morphology. To fill the above‐mentioned gap, this work presents a spiral carbon fiber compounded with CoNi magnetic nanoparticles (CoNi@SCF). Attributed to its special morphology and dielectric‐magnetic synergy, this material offers abundant attenuation mechanisms, demonstrating strong absorption at multiple frequencies with broadband application potential. In particular, the maximum reflection loss and effective absorption bandwidth of CoNi@SCF reach −66.5 dB at 2.9 mm and 6.6 GHz at 2.1 mm, respectively, and the maximum RCS reduction value of 41.5 dB m 2 also confirms the actual efficiency. In addition, gelation and hydrophobic modification experiments have been explored to meet the requirements for the employment of magnetic carbon fibers in practical scenarios. Therefore, this work may provide new inspiration for the design and manufacture of novel magnetic carbon fiber absorbers with great stability and multiband absorption performance.
科研通智能强力驱动
Strongly Powered by AbleSci AI