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通过与洛伦兹力的准静态相互作用来稳健地确定单个碳纳米管的杨氏模量。

Robust determination of Young's modulus of individual carbon nanotubes by quasi-static interaction with Lorentz forces.

机构信息

Leibniz Institute for Solid State and Materials Research IFW Dresden, PF 270116, 01171 Dresden, Germany.

出版信息

Ultramicroscopy. 2011 Jan;111(2):155-8. doi: 10.1016/j.ultramic.2010.10.019. Epub 2010 Nov 7.

Abstract

Young's modulus of an individual multi-wall carbon nanotube has been determined by the method of quasi-static transverse bending due to a Lorentz force observed in situ in a transmission electron microscope. The deflection of the nanotube allows the determination of Young's modulus using Euler-Bernoulli's beam equation. Because we determine the specific dependence of the deflection on the position along the nanotube axis, it is possible to gain insight into the type of mountings and furthermore allows for an estimation of the homogeneity of the nanotube. Both properties have been found to be of importance to determine Young's modulus. It was found to be higher by up to a factor of 1.6 compared to the value obtained by assuming rigid mountings.

摘要

通过在透射电子显微镜中观察到的洛伦兹力引起的准静态横向弯曲方法,确定了单个多壁碳纳米管的杨氏模量。纳米管的挠度允许使用欧拉-伯努利梁方程确定杨氏模量。因为我们确定了挠度对纳米管轴上位置的具体依赖关系,所以可以深入了解安装类型,并且可以估计纳米管的均匀性。这两个特性对于确定杨氏模量都很重要。与假设刚性安装时得到的值相比,发现杨氏模量高出了 1.6 倍。

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