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Polymer-Carbon Nanotube Sheets for Conformal Load Bearing Antennas

机译:用于共形承载天线的聚合物碳纳米管板

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摘要

We propose a conductive carbon nanotube (CNT) sheet to realize conformal antennas on polymer substrates. Polymer-ceramic composites (rubber-like structures) have good RF (high dielectric constant and low loss tangent) and desirable mechanical properties (conformal, flexible and lightweight). However, there is a challenge in printing metallization circuits on polymer substrates due to their hydrophobic nature. Also, they are associated with low metal-polymer adhesion, causing peeling under stain or tensile stresses. To address these issues, in this paper, we consider the approach of embedding high density vertically-aligned carbon nanotubes within the polymer composite to achieve a CNT sheet having high structural compatibility. We present the fabrication process to achieve high conductivity CNT sheets and construct a sample polymer-CNT patch antenna, yielding a 5.6 dB gain. This is only 0.8 dB lower than that of an ideal patch made of perfect electric conductor (PEC). Strain and tensile tests are also carried out to evaluate electrical performance of the polymer-CNT sheet as it is bent and stretched. Our measurements show that the proposed conductive polymer-CNT sheet is highly flexible and preserves good conductivity under small bending and stretching. The CNT sheet retains acceptable performances even after 100$^{circ}$ bending and 13% stretching. The proposed polymer-CNT sheets are well suited for load bearing antenna applications.
机译:我们提出了一种导电碳纳米管(CNT)片,以在聚合物基板上实现共形天线。聚合物陶瓷复合材料(类似橡胶的结构)具有良好的RF(高介电常数和低损耗正切)和理想的机械性能(保形,柔性和轻质)。然而,由于其疏水性,在聚合物基底上印刷金属化电路存在挑战。而且,它们还与低的金属-聚合物粘附性相关,从而导致在污点或拉应力下剥离。为了解决这些问题,在本文中,我们考虑将高密度垂直排列的碳纳米管嵌入聚合物复合材料中以获得具有高结构相容性的CNT片的方法。我们介绍了实现高电导率CNT片材的制造过程,并构建了一个样品聚合物-CNT贴片天线,可产生5.6 dB的增益。这仅比由完美电导体(PEC)制成的理想贴片低0.8 dB。还进行了应变和拉伸测试,以评估聚合物CNT片材弯曲和拉伸时的电性能。我们的测量结果表明,所提出的导电聚合物-CNT片具有很高的柔韧性,并且在较小的弯曲和拉伸下仍保持良好的导电性。甚至在弯曲100%和拉伸13%之后,CNT片材仍保持可接受的性能。提出的聚合物CNT片非常适合承载天线的应用。

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