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Mechanical characterization of a Au coated carbon nanotube multi-layered structure

机译:au涂覆的碳纳米管多层结构的机械表征

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摘要

Multiwalled Carbon Nanotube (MWCNT) -coated surfaces have been proved to be able to provide stable resistance for the electrical contact under low force conditions since they can offer a compliant support for the conducting gold layer. However, the contact mechanics of the Au/MWCNTs composite have not been understood. In this study, a finite element multi-layered contact model was developed, in which the top layer was modeled as a composite and under layer was modeled as CNT forest. The study shows that this complex surface is best modeled as a multi-layered structure. The model is optimized and validated with nano-indenter data. The model can help to better understand the structure and material properties of Au/CNTs surfaces, and can provide guidance to optimize the surface in terms of contact resistance performance in MEMS switches.
机译:事实证明,多壁碳纳米管(MWCNT)涂层表面可在低压力条件下为电接触提供稳定的电阻,因为它们可以为导电金层提供顺应性的支撑。但是,Au / MWCNTs复合材料的接触机理尚不清楚。在这项研究中,建立了一个有限元多层接触模型,其中顶层建模为复合材料,下层建模为CNT林。研究表明,这种复杂的表面最好建模为多层结构。该模型已使用纳米压头数据进行了优化和验证。该模型可以帮助更好地了解Au / CNTs表面的结构和材料特性,并可以提供有关在MEMS开关的接触电阻性能方面优化表面的指导。

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