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Flexible conductive fabric/E-glass fibre composite ultra-wideband antenna for future wireless networks

机译:用于未来无线网络的柔性导电织物/电子玻璃纤维复合超宽带天线

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摘要

This study highlights the integration potential of a highly conductive fabric into composite materials based on an efficient fabrication technology for coplanar waveguide flexible composite ultra-wideband antenna radiating from 3.3 to 12 GHz. A thin sheet of a highly conductive fabric has been embedded by infusion process in a thin composite laminate made of E-glass fibre mat and epoxy resin to fabricate a flexible conductive composite laminate. The antenna elements have been machined precisely by laser etching. The measured radiation efficiency reaches over 70% throughout the antenna operating frequency band with satisfactory radiation patterns and gain. The composite antenna exhibits reliable performance under different bending conditions as presented by the measurements. The high radiation performance, the seamless integration process and flexible mechanical properties of such composite antennas pave the way for their promising potential for integrating efficient antennas into various devices and objects made of composite laminate materials.
机译:这项研究强调了基于高效制造技术的高导电性织物在复合材料中的集成潜力,该技术可用于共面波导柔性复合超宽带天线,辐射范围为3.3至12 GHz。通过注入工艺将高导电织物的薄片嵌入由E-玻璃纤维毡和环氧树脂制成的薄复合层压材料中,以制造柔性导电复合层压材料。天线元件已通过激光蚀刻精确加工。在整个天线工作频带内,测得的辐射效率达到70%以上,并具有令人满意的辐射方向图和增益。如测量结果所示,复合天线在不同的弯曲条件下表现出可靠的性能。这种复合天线的高辐射性能,无缝集成工艺和灵活的机械性能为其将高效天线集成到复合层压材料制成的各种设备和物体中的潜在潜力铺平了道路。

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