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High-aspect-ratio, 3-D micromachining of carbon-nanotube forests by micro-electro-discharge machining in air

机译:空气中微放电加工对碳纳米管森林的高纵横比3-D微加工

摘要

This paper reports micro-electro-discharge machining of vertically aligned carbon nanotube forests for the formation of high-aspect-ratio, three-dimensional microstructures in the material. The developed forest machining method is a dry process performed in air, generating high-frequency pulses of electrical discharge to locally machine the nanotubes in order to create target shapes in a forest. With this approach, forest microstructures can be fabricated to have varying shapes along their height, unachievable with conventional pre-patterned chemical vapor deposition growth techniques. The use of the pulses with a minimized discharge energy defined with 35 V and 10 pF in the discharge generation circuit leads to an aspect ratio of 20 with the smallest feature of 5 µm in forests without disordering the vertical orientation of the nanotubes. Micromachining of multilayer geometries as well as arrayed needle-like microstructures with angled surfaces is demonstrated.
机译:本文报道了垂直排列的碳纳米管森林的微放电加工,以在材料中形成高纵横比的三维微观结构。发达的森林加工方法是在空气中进行的干燥过程,产生高频放电脉冲以局部加工纳米管,从而在森林中形成目标形状。通过这种方法,可以将森林微结构沿其高度制造成具有各种形状,这是传统的预图案化化学气相沉积生长技术无法实现的。在放电发生电路中使用具有35 V和10 pF的最小放电能量的脉冲会导致纵横比为20,在森林中的最小特征为5 µm,而不会扰乱纳米管的垂直方向。演示了多层几何结构以及表面倾斜的针状微结构的微加工。

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