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首页> 外文期刊>Mechanics of Advanced Materials and Structures >Frequency analysis of sandwich beam with FG carbon nanotubes face sheets and flexible core using high-order element
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Frequency analysis of sandwich beam with FG carbon nanotubes face sheets and flexible core using high-order element

机译:用高阶元件与FG碳纳米管夹紧夹层梁晶梁的频率分析

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In the present paper, the vibrational behavior of sandwich beam with a flexible core and anti-symmetric functionally graded carbon nanotubes face sheet is investigated. Carbon nanotubes are considered as functional graded materials in the thickness of the faces and their properties change along the thickness of the face sheets. For the modeling of sandwich beam behavior, the Euler-Bernoulli theory is used for face sheets and the semi-3D elasticity is used for the core, which allowed us to investigate the flexibility of the core. Differential equations of motions are derived using the virtual displacement principle. In this research, a high-order element is presented for solving equations of motion, and then by using this element, the finite element formulation has been extracted and solved. Numerical results are obtained for various boundary conditions, which include simply support, clamped, free-clamped, and simply support-clamped. Also, different volumes of carbon nanotubes have been investigated for different distributions. The results showed that the distribution of the FG-X pattern carbon nanotube leads to the highest natural frequency of the beam. The main conclusion of this research is that, in most cases the FG-O pattern has the lowest natural frequencies and in some cases the FG-? pattern has the lowest natural frequencies. In other words, generally, it can be say that the lowest natural frequencies of the sandwich beam with functionally graded carbon nanotubes faces depend on the boundary conditions, thickness ratio, and also the volume fraction of carbon nanotubes. In this paper also the effect of geometric angles of the beam, such as the thickness of the core and face sheet thickness on natural frequency of the system is also investigated.
机译:在本文中,研究了具有柔性芯和抗对称功能梯度碳纳米管面板的夹层梁的振动行为。碳纳米管被认为是面部厚度的功能分级材料,并且它们的性质沿着面板的厚度变化。对于夹层光束行为的建模,Euler-Bernoulli理论用于面板,并且半3D弹性用于芯,使我们能够研究芯的柔韧性。使用虚拟位移原理导出运动的微分方程。在该研究中,提出了一种高阶元件,用于求解运动方程,然后通过使用该元件,已经提取并解决了有限元制剂。为各种边界条件获得数值结果,其包括简单地支撑,夹紧,自由夹紧,并且简单地支撑夹紧。此外,已经研究了不同的分布式的不同体积的碳纳米管。结果表明,FG-X模式碳纳米管的分布导致光束的最高固有频率。这项研究的主要结论是,在大多数情况下,FG-O模式具有最低的自然频率和在某些情况下FG-?图案具有最低的自然频率。换句话说,通常可以说,具有功能梯度碳纳米管的夹层光束的最低自然频率取决于边界条件,厚度比以及碳纳米管的体积分数。在本文中,还研究了梁的几何角度的影响,例如系统的固体频率的芯和面板厚度的厚度。

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