Study on “Metamaterial” Structural Absorbing Composite Technology

被引:8
|
作者
Li S.-M. [1 ,2 ,3 ]
Jiang S.-C. [1 ,2 ,3 ]
Wang Y.-L. [3 ]
Gu J.-X. [1 ,2 ,3 ]
Xing L.-Y. [1 ,2 ,3 ]
机构
[1] AVIC Composite Technology Center, Beijing
[2] Science and Technology on Advanced Composites Laboratory, AECC Beijing Institute of Aeronautical Materials, Beijing
[3] AECC Beijing Institute of Aeronautical Materials, Beijing
来源
关键词
Mechanical property; Metamaterial; Microwave absorbing property; Structural absorbing composite;
D O I
10.11868/j.issn.1001-4381.2016.000152
中图分类号
学科分类号
摘要
The process technology and the mechanical and electrical properties of the “metamaterial”structural absorbing composites were studied, in which metal periodic structure units were produced on the organic carrier film and then combined with medium. Through the breakthrough of key technologies involving producing different size metal periodic structure, the transfer of metal periodic structure, and optimizing process parameters, the “metamaterial” structural absorbing composite with good wave-absorbing and mechanical stabilities that contained multi-layer metal periodic structure was prepared. The “metamaterial” structural absorbing composite has a high broadband absorbing property in the frequency range of 2-18GHz. © 2017, Journal of Materials Engineering. All right reserved.
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页码:10 / 14
页数:4
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共 17 条
  • [1] Sui S., Ma H., Wang D.J., Et al., The design and optimization of an ultra-broad band, light-weight, and wide incident angle metamaterial absorber based on topology optimization, Journal of Functional Materials, 46, 23, pp. 23056-23059, (2015)
  • [2] Shen Y., Pei Z.B., Qu S.B., Et al., Design and fabrication of a wideband frequency selective surface absorber loaded with a high dielectric thin layer, Journal of Functional Materials, 46, 19, pp. 19075-19078, (2015)
  • [3] Zhang C.F., Li H.X., Lv M.Y., Development of stealth technique compounded radar absorbing material and FSS, Materials Review, 21, 1, pp. 118-121, (2007)
  • [4] Xing L.Y., Jiang S.C., Li B.T., Microwave absorbing composite with circuit analogue, Acta Materiae Compositae Sinica, 21, 6, pp. 27-33, (2004)
  • [5] Liu H.T., Cheng H.F., Cheng S.J., Absorbing properties of resistive capacitive FSS absorbers, Journal of Aeronautical Materials, 27, 6, pp. 69-74, (2007)
  • [6] Sun L.K., Cheng H.F., Zhou Y.J., Et al., Design and preparation of a radar-absorbing material based on metamaterial, Acta Physica Sinica, 60, 10, (2011)
  • [7] Liu H.T., Cheng H.F., Chu Z.Y., Et al., The application and latest development of FSS in radar absorbing materials, Materials Review, 19, 9, pp. 30-32, (2005)
  • [8] Zhou Z.H., Huang D.Q., Liu X.L., Et al., Application developments of metamaterials in wideband microwave absorbing materials, Journal of Materials Engineering, 5, pp. 91-96, (2014)
  • [9] Huang D.Q., Kang F.Y., Zhou Z.H., Et al., Broadening and optimizing microwave absorbing bandwidth by metamaterial unit contour method, Journal of Materials Engineering, 11, pp. 1-6, (2014)
  • [10] Zhang Y., Zhang B.Z., Duan J.P., Et al., Application of metamaterial in perfect absorber, Journal of Materials Engineering, 44, 11, pp. 120-128, (2016)