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Fundamental investigations of Carbon Nanotubes working asactuators

机译:碳纳米管的基本研究工作辅助器

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Excellent properties like low density, high mechanical stiffness as well as an outstanding thermal and electrical conductivity make researchers focusing on carbon nanotubes (CNTs) since years. Beside that it is found that structures made of CNTs can be actuated when they are set up like a capacitor. Usually two dimensional (2D) CNT-papers with randomly oriented CNTs, called Bucky-papers, are used. They are charged and divided by an electrically insulating but ionic conductible electrolyte. Experiments demonstrate low voltages for actuation (±1V). Although the mechanism of CNT-actuation is still an open issue theoretical studies suggest a charge and ion induced lengthening of the C-bonds, which predict theoretical strains up to 1%. These characteristics make CNTs a potential candidate for lightweight and powerful actuators of future adaptive aerospace applications. The presented work gives an overview of possible CNT-actuator configurations. Comprehensive analysis tools for 2D mats of randomly oriented CNTs have been developed to guarantee a consistent data base for the comparison of different CNT-configurations. It is focused on the electro-mechanical properties with respect to the processing and configuration of CNT-actuators. For a more efficient use of the mechanical advantages of the CNT-geometry a new aligning manufacturing approach is presented, to get highly oriented 2D CNT-papers. Their properties are compared with randomly oriented CNT-papers. Finally a new test set-up will be introduced, which enables deflection measurements directly on the top of vertically aligned CNTs (CNT-arrays). The buildup and necessary prework are shown, as well as results of the first experiments. The method of measuring along the axis of aligned CNTs qualifies this set-up to get a deeper understanding about the actuation mechanism of CNTs. Vertically aligned CNTs promise to be a more efficient actuator configuration because of their high stiffness in direction of actuation.
机译:优异的性质,如低密度,高机械刚度以及出色的热电导和导电性,使得自年来以来的研究人员聚焦在碳纳米管(CNT)上。除此之外,发现由CNT制成的结构可以在与电容器类似的设置时致动。通常使用具有随机取向CNT的二维(2D)CNT纸,称为Bucky-Papers。它们被带电并除以电绝缘但离子可烧制电解质。实验表明致动的低电压(±1V)。虽然CNT驱动的机制仍然是一个开放的问题,但理论研究表明C-键的电荷和离子诱导的延长,这预测了高达1%的理论菌株。这些特性使CNT成为未来自适应航空航天应用的轻质和强大的执行器的潜在候选者。所呈现的工作概述了可能的CNT致动器配置。已经开发出用于2D垫的综合分析工具,用于保证对不同CNT配置进行比较的一致数据库。它专注于CNT致动器的加工和配置的电力学性能。为了更有效地使用CNT几何形状的机械优势,提出了新的对准制造方法,以获得高度取向的2D CNT-纸。将它们的性质与随机导向的CNT纸进行比较。最后,将引入新的测试设置,这使得能够直接在垂直对齐的CNT(CNT-arrays)的顶部上直接偏转测量。显示了构建和必要的预稿,以及第一次实验的结果。沿着对齐的CNT轴测量方法符合此设置的限定,以更深入地了解CNT的致动机制。由于它们在致动方向上的高刚度,垂直对准的CNT是一种更有效的致动器配置。

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