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Dynamics of rotating composite beams: A comparative study between CNT reinforced polymer composite beams and laminated composite beams using spectral finite elements

机译:旋转复合梁的动力学:碳纳米管增强聚合物复合梁与层合复合梁的频谱有限元对比研究

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This paper presents a spectral finite element formulation for uniform and tapered rotating CNT embedded polymer composite beams. The exact solution to the governing differential equation of a rotating Euler-Bernoulli beam with maximum centrifugal force is used as an interpolating function for the spectral element formulation. Free vibration and wave propagation analysis is carried out using the formulated spectral element. The present study shows the substantial effect of volume fraction and L/D ratio of CNTs in a beam on the natural frequency, impulse response and wave propagation characteristics of the rotating beam. It is found that the CNTs embedded in the matrix can make the rotating beam non-dispersive in nature at higher rotation speeds. Embedded CNTs can significantly alter the dynamics of polymer-nanocomposite beams. The results are also compared with those obtained for carbon fiber reinforced laminated composite rotating beams. It is observed that CNT reinforced rotating beams are superior in performance compared to laminated composite rotating beams.
机译:本文提出了用于均匀和锥形旋转CNT嵌入聚合物复合材料梁的频谱有限元公式。具有最大离心力的旋转Euler-Bernoulli光束的控制微分方程的精确解用作频谱元素公式的插值函数。使用公式化的频谱元素进行自由振动和波传播分析。本研究显示了束中CNT的体积分数和L / D比对旋转束的固有频率,脉冲响应和波传播特性的重大影响。发现嵌入在基质中的CNT可以使旋转束本质上在更高的旋转速度下不分散。嵌入的CNT可以显着改变聚合物-纳米复合材料束的动力学。还将结果与碳纤维增强层压复合材料旋转梁的结果进行了比较。可以看出,与层压复合旋转梁相比,CNT增强旋转梁的性能优越。

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