首页> 外文期刊>Computer Modeling in Engineering & Sciences >Application of a Hybrid Mesh-free Method Based on Generalized Finite Difference (GFD) Method for Natural Frequency Analysis of Functionally Graded Nanocomposite Cylinders Reinforced by Carbon Nanotubes
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Application of a Hybrid Mesh-free Method Based on Generalized Finite Difference (GFD) Method for Natural Frequency Analysis of Functionally Graded Nanocomposite Cylinders Reinforced by Carbon Nanotubes

机译:基于广义有限差分(GFD)的无网格混合方法在碳纳米管增强的功能梯度纳米复合材料圆柱体固有频率分析中的应用

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摘要

In this article, the effects of carbon nanotubes distributions on natural frequency are studied for a functionally graded nanocomposite thick hollow cylinder reinforced by single-walled carbon nanotubes using a hybrid mesh-free method. The FG nanocomposite cylinder is excited by a shock loading, which is applied on the inner surface of cylinder. The first natural frequency is obtained for various nonlinear grading patterns of distributions of the aligned carbon nanotubes. The effects of various nonlinear grading patterns on natural frequency are obtained and discussed in details. The presented hybrid mesh-free method is based on the generalized finite difference (GFD) method for spatial coordinates and New-mark finite difference (NFD) for time domain. To obtain the dynamic behavior and also first natural frequency, time histories of displacements are transferred to frequency domain by fast Fourier transformation (FFT) technique. Numerical results demonstrate the efficiency of the proposed method in frequency domain analysis for functionally graded nanocomposites reinforced by carbon nanotube (FGNRCN).
机译:在这篇文章中,研究了碳纳米管分布对固有频率的影响,采用了一种无杂化混合方法的功能梯度的单壁碳纳米管增强的纳米复合材料厚空心圆柱体。 FG纳米复合材料圆柱体受到施加在圆柱体内表面的冲击载荷的激励。对于对准的碳纳米管的分布的各种非线性渐变图案,获得第一固有频率。获得并讨论了各种非线性分级模式对固有频率的影响。提出的混合无网格方法基于用于空间坐标的广义有限差分(GFD)方法和用于时域的New-mark有限差分(NFD)方法。为了获得动态行为以及第一固有频率,通过快速傅立叶变换(FFT)技术将位移的时间历史记录转移到频域。数值结果证明了该方法在频域分析中对碳纳米管(FGNRCN)增强的功能梯度纳米复合材料的有效性。

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