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Carbon nanotube-reinforced composites: frequency analysis theories based on the matrix stiffness

机译:碳纳米管增强复合材料:基于基体刚度的频率分析理论

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Strong and versatile carbon nanotubes are finding new applications in improving conventional polymer-based fibers and films. This paper studies the influence of matrix stiffness and the intertube radial displacements on free vibration of an individual double-walled carbon nanotube (DWNT). For this, a double elastic beam model is presented for frequency analysis in a DWNT embedded in an elastic matrix. The analysis is based on both Euler–Bernoulli and Timoshenko beam theories which considers shear deformation and rotary inertia and for both concentric and non-concentric assumptions considering intertube radial displacements and the related internal degrees of freedom. New intertube resonant frequencies and the associated non-coaxial vibrational modes are calculated. Detailed results are demonstrated for the dependence of resonant frequencies and mode shapes on the matrix stiffness. The results indicate that internal radial displacement and surrounding matrix stiffness could substantially affect resonant frequencies especially for longer double-walled carbon nanotubes of larger innermost radius at higher resonant frequencies, and thus the latter does not keep the otherwise concentric structure at ultrahigh frequencies. Therefore, depending on the matrix stiffness, for carbon nanotubes reinforced composites, different analysis techniques should be used while the aspect ratio of carbon nanotubes has a little effect on the analysis theory which should be selected.
机译:强而通用的碳纳米管在改善传统的基于聚合物的纤维和薄膜方面发现了新的应用。本文研究了基体刚度和管间径向位移对单个双壁碳纳米管(DWNT)自由振动的影响。为此,提出了一种双弹性梁模型,用于在嵌入弹性矩阵的DWNT中进行频率分析。该分析基于Euler–Bernoulli和Timoshenko梁理论,该理论考虑了剪切变形和旋转惯性,并考虑了管间径向位移和相关的内部自由度,针对同心和非同心假设。计算新的管间谐振频率和相关的非同轴振动模式。证明了共振频率和振型对矩阵刚度的依赖性的详细结果。结果表明,内部径向位移和周围基体刚度会显着影响共振频率,特别是对于在较高共振频率下具有更大内半径的较长双壁碳纳米管,因此后者在超高频下不会保持同心结构。因此,根据基体刚度,对于碳纳米管增强复合材料,应使用不同的分析技术,而碳纳米管的纵横比对应选择的分析理论影响很小。

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