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An exact solution for the free-vibration analysis of functionally graded carbon-nanotube-reinforced composite beams with arbitrary boundary conditions

机译:任意边界条件下功能梯度碳纳米管增强复合材料梁自由振动分析的精确解

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摘要

We present an exact method to model the free vibration of functionally graded carbon-nanotube-reinforced composite (FG-CNTRC) beams with arbitrary boundary conditions based on first-order shear deformation elasticity theory. Five types of carbon nanotube (CNT) distributions are considered. The distributions are either uniform or functionally graded and are assumed to be continuous through the thickness of the beams. The displacements and rotational components of the beams are expressed as a linear combination of the standard Fourier series and several supplementary functions. The formulation is derived using the modified Fourier series and solved using the strong-form solution and the weak-form solution (i.e., the Rayleigh–Ritz method). Both solutions are applicable to various combinations of boundary constraints, including classical boundary conditions and elastic-supported boundary conditions. The accuracy, efficiency and validity of the two solutions presented are demonstrated via comparison with published results. A parametric study is conducted on the influence of several key parameters, namely, the L/h ratio, CNT volume fraction, CNT distribution, boundary spring stiffness and shear correction factor, on the free vibration of FG-CNTRC beams.
机译:基于一阶剪切变形弹性理论,我们提出了一种精确的方法来模拟功能梯度的碳纳米管增强复合材料(FG-CNTRC)梁在任意边界条件下的自由振动。考虑了五种类型的碳纳米管(CNT)分布。分布是均匀的或功能上渐变的,并假定在整个梁的厚度上是连续的。光束的位移和旋转分量表示为标准傅里叶级数和几个补充函数的线性组合。该公式是使用改进的傅里叶级数导出的,并使用强形式解和弱形式解(即瑞利-里兹方法)求解。两种解决方案都适用于边界约束的各种组合,包括经典边界条件和弹性支撑的边界条件。通过与已发表的结果进行比较,证明了所提出的两种解决方案的准确性,效率和有效性。对L / h比,CNT体积分数,CNT分布,边界弹簧刚度和剪切修正系数等几个关键参数对FG-CNTRC梁自由振动的影响进行了参数研究。

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