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Carbon Fiber Reinforced Polymer with Shredded Fibers: Quasi-Isotropic Material Properties and Antenna Performance

机译:碳纤维增强纤维与切细纤维:准各向同性材料性能和天线性能

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摘要

A carbon fiber reinforced polymer (CFRP) laminate, with the top layer consisting of shredded fibers, is proposed and manufactured. The shredded fibers are aligned randomly on the surface to achieve a more isotropic conductivity, as is desired in antenna applications. Moreover, fiber shreds can be recycled from carbon fiber composites. Conductivity, permittivity, and permeability are obtained with the Nicolson-Ross-Weir method from material samples measured inside rectangular waveguides in the frequency range of 4 to 6 GHz. The decrease in material anisotropy results in negligible influence on antennas. This is shown by measuring the proposed CFRP as ground plane material for both a narrowband wire monopole antenna for 5.9 GHz and an ultrawideband conical monopole antenna for 1-10 GHz. For comparison, all measurements are repeated with a twill-weave CFRP.
机译:提出并制造了碳纤维增强聚合物(CFRP)层压板,其顶层由切碎的纤维组成。如天线应用中所希望的那样,切碎的纤维在表面上随机排列以实现更高的各向同性导电性。此外,可以从碳纤维复合材料中回收纤维碎片。使用Nicolson-Ross-Weir方法从矩形波导内部在4至6 GHz频率范围内测量的材料样本获得电导率,介电常数和磁导率。材料各向异性的减小导致对天线的影响可忽略不计。通过测量建议的CFRP作为5.9 GHz窄带单极天线和1-10 GHz超宽带锥形单极天线的接地层材料,可以看出这一点。为了进行比较,使用斜纹编织CFRP重复所有测量。

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  • 来源
    《International journal of antennas and propagation》 |2017年第2期|6152651.1-6152651.11|共11页
  • 作者单位

    Christian Doppler Lab Wireless Technol Sustainabl, Vienna, Austria|Tech Univ Wien, Inst Telecommun, Vienna, Austria;

    Christian Doppler Lab Wireless Technol Sustainabl, Vienna, Austria|Tech Univ Wien, Inst Telecommun, Vienna, Austria;

    Tech Univ Wien, Inst Sensor & Actuator Syst, Vienna, Austria;

    Christian Doppler Lab Wireless Technol Sustainabl, Vienna, Austria|Tech Univ Wien, Inst Telecommun, Vienna, Austria;

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