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Analysis of static friction and elastic forces in a nanowire bent on a flat surface: A comparative study

机译:弯曲在平面上的纳米线中的静摩擦和弹性力的分析:比较研究

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摘要

ZnO nanowires bent to a complex shape and held in place by static friction force from supporting flat surface are investigated experimentally and theoretically. The complex shapes are obtained by bending the nanowires inside a scanning electron microscope with a sharp tip attached to a nanopositioner. Several methods previously described in the literature are applied along with author's original method to calculate the distributed friction force and stored elastic energy in the nanowires from the bending profile. This comparative study evidences the importance of the usage of appropriate models for accurate analysis of the nanowires profile. It is demonstrated that incomplete models can lead up to an order of magnitude error in the calculated friction force for complex profiles.
机译:ZnO纳米线弯曲成复杂的形状并通过支撑平面的静摩擦力固定在适当位置。复杂的形状是通过在扫描电子显微镜内弯曲纳米线而获得的,其尖端连接到纳米定位器上。先前在文献中描述的几种方法与作者的原始方法一起应用,以根据弯曲轮廓计算纳米线中的分布摩擦力和存储的弹性能。这项比较研究证明了使用适当的模型对纳米线轮廓进行准确分析的重要性。结果表明,对于复杂的轮廓,不完整的模型会导致计算出的摩擦力出现一个数量级的误差。

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