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On the Reliability of 97 Carbon Content Graphene-based Transmission Lines in Bending Applications and Comparison to Copper and Aluminum Conductors

机译:基于97%碳含量石墨烯的传输线在弯曲应用中的可靠性及铜和铝导体比较

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In our modern world, the use of conformal surfaces to implement various wireless systems is gaining in popularity. Though many flexible substrates are being developed, the conductive materials are fragile and prone to breakage caused by the repetitive bending at a specific spot. Therefore, understanding the bending on the electromagnetic characteristics of different conductive materials is an important area to study. In this paper, the effect of bending on the top copper, aluminum and graphene-based conductors of microstrip transmission lines is studied. A fixture was developed to experimentally observe the bending characteristics of the different aforementioned TLs. The results in this paper showed that on average, after 57 iterations the aluminum connection failed, and after 74 iterations, the copper connection failed. Then, the fixture conducted 750 iterations on the graphene-based conductors and no failure was observed; showing the additional mechanical benefits of the graphene-based conductors. It was also shown that all the materials agreed on S-parameters in full wave simulations. Graphene-based conductive materials showed its superior reliability on bending applications without compromising the performance on the TL.
机译:在我们的现代世界中,使用保形表面来实施各种无线系统是普及的。尽管正在开发许多柔性基板,但是导电材料是脆弱的并且容易易于由特定点处的重复弯曲引起的破损。因此,了解不同导电材料的电磁特性的弯曲是要研究的重要领域。本文研究了弯曲在顶部铜,铝和石墨烯基导体的微带传输线的效果。开发了一种夹具以通过实验观察不同上述TLS的弯曲特性。本文的结果表明,平均而言,在57次迭代之后,铝连接失效,并且在74次迭代之后,铜连接失败。然后,该夹具在基于石墨烯的导体上进行了750次迭代,并且没有观察到失效;显示基于石墨烯的导体的额外机械益处。还表明所有材料都同意全波模拟中的S参数。基于石墨烯的导电材料在不影响TL上的性能的情况下,弯曲应用的优异可靠性。

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