3D printed carbon based all-dielectric honeycomb metastructure for thin and broadband electromagnetic absorption

被引:28
|
作者
Zhou, Qian [1 ]
Qi, Chenxi [1 ]
Shi, Tiantian [3 ]
Li, Yuekun [3 ]
Ren, Wei [1 ]
Gu, Shengyue [1 ]
Xue, Bei [1 ]
Ye, Fang [2 ]
Fan, Xiaomeng [2 ]
Du, Lifei [3 ]
机构
[1] Xian Univ Posts & Telecommun, Coll Sci, Xian 710121, Peoples R China
[2] Northwestern Polytech Univ, Sci & Technol Thermostructural Composite Mat Lab, Xian 710072, Peoples R China
[3] Xian Univ Sci & Technol, Coll Mat Sci & Engn, Xian 710054, Peoples R China
关键词
Honeycomb; 3-D Printing; Electrical properties; Electromagnetic wave absorption; MICROWAVE ABSORBING PROPERTIES; COMPOSITE; DESIGN;
D O I
10.1016/j.compositesa.2023.107541
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Excellent electromagnetic absorbers with comprehensive performances of thin thickness, lightweight, broadband and strong absorption have become a significant requirement for electromagnetic interference and stealth technologies. In this study, a honeycomb metamaterial absorber with the conductive coating is designed and proposed, with 3D printed honeycomb skeleton coated by the conductive coating composed of carbon fibers, carbon nanotubes and resin. The optimized metamaterial absorber realized > 90% absorption in 5.65 similar to 40 GHz with a total thickness of 6 mm, indicating a relative bandwidth of 152.9% with a relative thickness of 0.107. The excellent performances of the proposed absorber were contributed by the synergy effect of the electric param-eters of the fabricated composites as well as the geometry parameters of the honeycomb meta-structure, which induced multiple loss modes. The synergy design on the 3D printed honeycomb skeleton and conductive coating would give a new insight into designing lightweight ultra-broadband microwave metamaterial absorbers.
引用
收藏
页数:8
相关论文
共 50 条
  • [1] 3D printed broadband transformation optics based all-dielectric microwave lenses
    Yi, Jianjia
    Burokur, Shah Nawaz
    Piau, Gerard-Pascal
    de Lustrac, Andre
    JOURNAL OF OPTICS, 2016, 18 (04)
  • [2] Optimized pyramidal honeycomb PEEK/CF composites metastructure through 3D printing for broadband electromagnetic wave absorption
    Zhang, Ximing
    Wei, Guoke
    Huang, Xinghan
    Zhang, Hang
    Hao, Xingyu
    Tan, Shujuan
    Liu, Kui
    Ji, Guangbin
    MATERIALS TODAY PHYSICS, 2025, 50
  • [3] 3D printed labyrinth multiresonant composite metastructure for broadband and strong microwave absorption
    YuBing Duan
    QingXuan Liang
    Zhen Yang
    Xin Wang
    Pan Liu
    DiChen Li
    Science China Technological Sciences, 2023, 66 : 3574 - 3584
  • [4] 3D printed labyrinth multiresonant composite metastructure for broadband and strong microwave absorption
    Duan, Yubing
    Liang, Qingxuan
    Yang, Zhen
    Wang, Xin
    Liu, Pan
    Li, Dichen
    SCIENCE CHINA-TECHNOLOGICAL SCIENCES, 2023, 66 (12) : 3574 - 3584
  • [5] 3D printed labyrinth multiresonant composite metastructure for broadband and strong microwave absorption
    DUAN YuBing
    LIANG QingXuan
    YANG Zhen
    WANG Xin
    LIU Pan
    LI DiChen
    Science China(Technological Sciences), 2023, 66 (12) : 3574 - 3584
  • [6] 3D printed labyrinth multiresonant composite metastructure for broadband and strong microwave absorption
    DUAN YuBing
    LIANG QingXuan
    YANG Zhen
    WANG Xin
    LIU Pan
    LI DiChen
    Science China(Technological Sciences), 2023, (12) : 3574 - 3584
  • [7] A 3-D Printed Broadband Circularly Polarized All-dielectric MillimeterWave Transmitarray Antenna
    Du, Xinlian
    Shao, Yu
    Luo, Feihong
    Zhang, Changhong
    Zhang, Jie
    IEICE ELECTRONICS EXPRESS, 2025,
  • [8] 3D printed SiC nanowire reinforced composites for broadband electromagnetic absorption
    Xiao, Shanshan
    Mei, Hui
    Han, Daoyang
    Cheng, Laifei
    CERAMICS INTERNATIONAL, 2019, 45 (09) : 11475 - 11483
  • [9] Material extrusion 3D printing of large-scale SiC honeycomb metastructure for ultra-broadband and high temperature electromagnetic wave absorption
    Wang, Wenqing
    Li, Zengchan
    Gao, Xiong
    Huang, Yixing
    He, Rujie
    ADDITIVE MANUFACTURING, 2024, 85
  • [10] 3D printed lightweight metastructure with microwave absorption and mechanical resistance
    Li, Dongmeng
    Pan, Wenhui
    Wang, Tao
    Wang, Xian
    Gong, Rongzhou
    MATERIALS & DESIGN, 2023, 225