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首页> 外文期刊>Zeitschrift fur Angewandte Mathematik und Mechanik >On localized modes of free vibrations of single-walled carbon nanotubes embedded in nonhomogeneous elastic medium
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On localized modes of free vibrations of single-walled carbon nanotubes embedded in nonhomogeneous elastic medium

机译:非均匀弹性介质中嵌入的单壁碳纳米管自由振动的局域模

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摘要

Free axisymmetric vibrations of a single-walled carbon nanotube (SWCNT) embedded in a nonhomogeneous elastic matrix are studied on the base of the nonlocal continuum shell theory. The effect of the surrounding elastic medium are considered using the Winkler-type spring constant which is assumed to be variable along the tube axis. The tube may be prestressed by external tensile forces. The Flügge type shell equations, including the initial membrane hoop and axial stresses, are used as the governing ones. The constitutive equations are formulated by considering the small-scale effects. Using the asymptotic approach, the SWCNT eigenmodes are constructed in the form of functions decreasing rapidly away from some "weakest" line which is assumed to be far from the tube edges. This study shows that introducing the small length scale parameter into the tube model allows to take into account inclusions in the surrounding elastic matrix which may results in the strong localization of some eigenmodes. The dependence of the natural frequencies and the power of the localization of the corresponding modes upon the constant of non-locality, tensile stresses and the nanotube radius is analyzed.
机译:基于非局部连续壳理论,研究了嵌入非均匀弹性基体中的单壁碳纳米管(SWCNT)的自由轴对称振动。使用Winkler型弹簧常数考虑周围弹性介质的作用,该弹簧常数假定沿管轴方向是可变的。管可能会受到外部拉力的预应力。包括初始膜环和轴向应力在内的Flügge型壳方程被用作控制方程。本构方程是考虑到小尺度效应而制定的。使用渐近方法,SWCNT本征模以函数的形式构造,并从一些“最弱”的线迅速减小,该“最弱”的线被认为远离管的边缘。这项研究表明,将小长度比例参数引入到管模型中可以考虑到周围弹性矩阵中的内含物,这可能导致某些本征模的强定位。分析了固有频率和相应模式的定位能力对非局部常数,拉伸应力和纳米管半径的依赖性。

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