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Free vibration analysis of embedded functionally graded carbon nanotube-reinforced composite conical/cylindrical shells and annular plates using a numerical approach

机译:嵌入式功能梯度碳纳米管增强复合复合锥/圆柱壳和环形板的自由振动分析使用数值方法

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摘要

Free vibration analysis of embedded functionally graded carbon nanotube-reinforced composite (FG-CNTRC) conical, cylindrical shells and annular plates is carried out using the variational differential quadrature (VDQ) method. Pasternak-type elastic foundation is taken into consideration. It is assumed that the functionally graded nanocomposite materials have the continuous material properties defined according to extended rule of mixture. Based on the first-order shear deformation theory, the energy functional of the structure is calculated. Applying the generalized differential quadrature method and periodic differential operators in axial and circumferential directions, respectively, the discretized form of the energy functional is derived. Based on Hamilton's principle and using the VDQ method, the reduced forms of mass and stiffness matrices are obtained. The comparison and convergence studies of the present numerical method are first performed and then various numerical results are presented. It is found that the volume fractions and functionally grading of carbon nanotubes play important roles in the vibrational characteristics of FG-CNTRC cylindrical, conical shells and annular plates.
机译:使用变分差分正交(VDQ)法进行嵌入式功能梯度碳纳米管增强复合材料(FG-CNTRC)锥形,圆柱形壳和环形板的自由振动分析。考虑到普斯康纳克式弹性基础。假设功能梯度纳米复合材料具有根据延长的混合物规则定义的连续材料特性。基于一阶剪切变形理论,计算结构的能量功能。源于轴向和圆周方向上施加通用差分正交方法和周期性差分算子,得到的是能量功能的离散形式。基于汉密尔顿的原理和使用VDQ方法,获得了减少的质量和刚度矩阵。首先进行当前数值方法的比较和收敛研究,然后呈现各种数值结果。结果发现,碳纳米管的体积分数和功能分级在FG-CNTRC圆柱形,圆锥形壳体和环形板的振动特性中起重要作用。

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