木棉衍生碳纤维的制备及其吸波性能研究

Preparation of kapok-derived carbon fiber and its microwave absorption performance

  • 摘要: 随着现代电子信息技术与军事隐身技术的快速发展,电磁污染和雷达探测威胁日益严重,开发高效、轻质、宽频的电磁波吸收材料已成为材料科学领域的研究热点之一。利用生物质材料制备吸波剂,不仅可以发挥其独特的形貌优势,还符合绿色与循环经济的发展理念。本文以木棉纤维(kapok fiber,KF)为原料,通过直接碳化制备了具有中空结构的木棉基碳纤维(carbonized kapok fiber,CKF)。研究了碳化温度和吸波剂填充量对电磁参数及吸波性能的影响,并通过与实心结构的浆粕基碳纤维进行对比,验证了中空结构通过多次反射电磁波以及增加电磁波干涉损耗概率,显著增强了对电磁波的衰减能力。结果表明,当CKF 填充量为7%(质量分数)、材料厚度为2.5 mm 时,有效吸波频带(反射率小于−10 dB)达到5.2 GHz,最低反射损耗(minimum reflection loss,RLmin) 达到−33.7 dB,其吸波性能优于浆粕衍生的实心碳纤维。

     

    Abstract: The rapid advancement of modern electronic information technology and military stealth technology has led to increasing concerns regarding electromagnetic pollution and radar detection threats. Consequently, the development of high-efficiency, lightweight, and wide-band electromagnetic wave absorbing materials has emerged as a significant research focus within materials science. Absorbers derived from biomass materials not only leverage the unique morphological characteristics of these materials but also align with the principles of green and circular economic development. In this study, kapok fiber was utilized as the raw material to prepare CKF with a hollow structure through direct carbonization. The effects of carbonization temperature and absorber concentration on electromagnetic parameters and absorption performance were systematically investigated. By comparing the hollow structure of CKF with the solid structure of pulp-based carbon fiber, it was demonstrated that the hollow structure enhances electromagnetic wave attenuation through multiple reflections and increases the likelihood of electromagnetic wave interference loss. When the CKF filling ratio was 7% (by mass) and the material thickness was 2.5 mm, the effective absorption frequency band (reflection loss less than −10 dB) reached 5.2 GHz, with the lowest reflection loss (RLmin) achieving −33.7 dB. These results indicate superior absorption performance compared to solid carbon fiber derived from pulp.

     

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