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Post-Buckling Deformation of Single-Walled Carbon Nanotubes

机译:单壁碳纳米管的屈曲后变形

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摘要

We present a nanomechanical study of the post-buckling deformation of single-walled carbon nanotubes (SWNTs). One thin SWNT bundle is anchored as a clamped-hinged structure between a flexible atomic force microscopy (AFM) cantilever and a rigid manipulator probe by means of nanomanipulation inside a high resolution scanning electron microscope (SEM). Both the deformation curvatures of the clamped-hinged nanotube beam and the corresponding applied loads during the post-buckling deformation processes are concurrently measured, in situ, through recording the buckled nanotube beam shape and the deflection of the AFM cantilever, respectively, using the high resolution electron beam. Using our in-situ SEM nanomechanical testing platform, we perform tensile tests on the same nanotube structure to characterize its Young's modulus. Our experimental measurements of the post-buckling deformation curvatures of the bundled SWNTs and the corresponding applied loads are in reasonably good agreements with theoretical predictions based on a nonlinear elastica model. The results reported in this letter will be useful to the understanding of the structural deformation of one-dimensional nanostructures in the large displacement regime, and to the pursuit of their structural applications.
机译:我们提出了单壁碳纳米管(SWNTs)的屈曲后变形的纳米力学研究。通过在高分辨率扫描电子显微镜(SEM)内进行纳米处理,一个薄的SWNT束通过夹紧铰链结构固定在柔性原子力显微镜(AFM)悬臂和刚性操纵器探头之间。通过使用高倍率分别记录弯曲的纳米管束的形状和AFM悬臂的挠度,可同时测量原位同时测量夹紧铰接的纳米管束的变形曲率和相应的施加载荷。分辨率电子束。使用我们的原位SEM纳米力学测试平台,我们对相同的纳米管结构进行拉伸测试,以表征其杨氏模量。我们对捆绑的单壁碳纳米管屈曲后变形曲率和相应施加载荷的实验测量结果与基于非线性弹性模型的理论预测相当吻合。这封信中报道的结果将有助于理解大位移状态下的一维纳米结构的结构变形,并有助于其结构应用。

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