电磁屏蔽
材料科学
涂层
复合材料
电磁干扰
纳米孔
航空航天
电磁干扰
电磁辐射
吸收(声学)
表面改性
延展性(地球科学)
光电子学
聚合物
电镀(地质)
机械工程
反射(计算机编程)
纳米技术
作者
Wei Cheng,Ben Jia,Shuhan Xiang,Biao Chen,Yongjun Zhang,Zhuo Liu,Xiaopeng Wan,Heyuan Huang
摘要
In the functional structures of aerospace carbon fiber-reinforced polymer (CFRP) composites, achieving the simultaneous enhancement of electromagnetic interference (EMI) shielding performance and mechanical properties remains a critical challenge. In this work, an efficient CFRP interfacial modification strategy combining electrodeposition with vacuum heat treatment is proposed to address the inherent trade-off between shielding effectiveness and mechanical performance of CFRP-EMI shielding materials. A neuronal-like micro-nano Ni coating is fabricated on carbon fiber surfaces to enhance electromagnetic shielding capacity. The formed discontinuous Ni─C miscible regions, Ni/NiO/C heterogeneous multiphases, and nanoporous structures effectively improve the interfacial integration between the matrix and coating, as well as the mechanical properties. In the X-band, the reflection loss, absorption loss, and total EMI shielding effectiveness are increased by 33%, 18.6%, and 22.5%, respectively, while the ductility is improved by 201.78%, realizing the synergistic promotion of electromagnetic shielding and mechanical performance. Combined with experimental characterization and molecular dynamics analysis, the growth mechanism of polycrystalline phases during interfacial evolution is further clarified. This study innovatively proposes a high-efficiency and controllable design strategy for advanced CFRP-EMI functional materials, which provides a promising solution for the application of lightweight, high-strength, and self-adaptive electromagnetic shielding in the design of next-generation multifunctional aerospace structures.
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