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Nonlinear free vibration of graded graphene reinforced cylindrical shells: Effects of spinning motion and axial load

机译:渐变石墨烯增强圆柱壳的非线性自由振动:纺纱运动和轴向载荷的影响

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This paper presents an analytical study on linear and nonlinear free vibration characteristics and dynamic responses of spinning functionally graded (FG) graphene reinforced thin cylindrical shells with various boundary conditions and subjected to a static axial load. The weight fraction of graphene platelet (GPL) nanofillers in each concentric cylindrical layer is constant but follows a layer-wise variation through thickness direction, resulting in position-dependent elastic moduli, mass density and Poisson's ratio along the shell thickness. Based on the Donnell's nonlinear shell theory, the nonlinear partial differential equations of motion for the cylindrical shell are established by using the Hamilton's principle with the effects of centrifugal and Coriolis forces as well as the spin-induced initial hoop tension taken into account. The governing equations for nonlinear vibration of the nanocomposite cylindrical shell with different GPL dispersion patterns are derived from a set of nonlinear ordinary differential equations which are derived by employing the Galerkin approach. Dynamic responses of forward and backward travelling waves are investigated by analyzing the wave form and the frequency spectrum. Special attention is given to the effects of the weight fraction, dispersion patterns and the geometrical size of GPLs, the external axial load and spinning speeds of the cylindrical shell on the linear and nonlinear free vibrations of the nanocomposite cylindrical shell. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文介绍了具有各种边界条件的线性和非线性自由振动特性和纺丝功能梯度(FG)石墨烯增强薄圆柱形壳体的动力响应和静态轴向载荷的分析研究。每个同心圆柱形层中的石墨烯血小板(GPL)纳米填料的重量分数是恒定的,但是通过厚度方向进行层面变化,导致沿壳厚度的位置依赖性弹性模,质量密度和泊松比。基于Donnell的非线性壳理论,通过使用汉密尔顿的原理与离心和科里奥利力的影响以及考虑旋转诱导的初始环旋转张力来建立圆柱形壳体运动的非线性偏微分方程。具有不同GPL分散模式的纳米复合圆柱形壳体非线性振动的控制方程源自通过采用Galerkin方法来源的一组非线性常微分方程。通过分析波形和频谱来研究向前和向后行驶波的动态响应。特别注意重量级分,分散模式和GPLS的几何尺寸,外轴载和圆柱形壳体的外轴载和旋转速度在纳米复合圆柱形壳的线性和非线性自由振动上。 (c)2018年elestvier有限公司保留所有权利。

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