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Wave propagation analysis in carbon nanotube embedded composite using wavelet based spectral finite elements

机译:碳纳米管嵌入复合材料中基于小波的谱有限元的传播分析

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In this paper, elastic wave propagation is studied in a nanocomposite reinforced with multiwall carbon nanotubes (CNTs). Analysis is performed on a representative volume element of square cross section. The frequency content of the exciting signal is at the terahertz level. Here, the composite is modeled as a higher order shear deformable beam using layerwise theory, to account for partial shear stress transfer between the CNTs and the matrix. The walls of the multiwall CNTs are considered to be connected throughout their length by distributed springs, whose stiffness is governed by the van der Waals force acting between the walls of nanotubes. The analyses in both the frequency and time domains are done using the wavelet-based spectral finite element method (WSFEM). The method uses the Daubechies wavelet basis approximation in time to reduce the governing PDE to a set of ODEs. These transformed ODEs are solved using a finite element (FE) technique by deriving an exact interpolating function in the transformed domain to obtain the exact dynamic stiffness matrix. Numerical analyses are performed to study the spectrum and dispersion relations for different matrix materials and also for different beam models. The effects of partial shear stress transfer between CNTs and matrix on the frequency response function (FRF) and the time response due to broadband impulse loading are investigated for different matrix materials. The simultaneous existence of four coupled propagating modes in a double-walled CNT-composite is also captured using modulated sinusoidal excitation.
机译:在本文中,研究了弹性波在多壁碳纳米管(CNTs)增强的纳米复合材料中的传播。对正方形横截面的代表性体积元素执行分析。激励信号的频率含量为太赫兹级。在这里,使用分层理论将复合材料建模为高阶剪切可变形梁,以解决CNT与基体之间的局部剪切应力传递问题。认为多壁CNT的壁在整个长度上都是通过分布式弹簧连接的,弹簧的刚度由作用在纳米管壁之间的范德华力决定。使用基于小波的频谱有限元方法(WSFEM)进行了频域和时域分析。该方法及时使用Daubechies小波基近似将控制PDE减少为一组ODE。使用有限元(FE)技术对这些变换的ODE进行求解,方法​​是在变换的域中导出精确的插值函数,以获得精确的动态刚度矩阵。进行数值分析以研究不同基质材料以及不同光束模型的光谱和色散关系。研究了不同基质材料下碳纳米管与基体之间的局部剪切应力转移对宽带脉冲载荷引起的频率响应函数(FRF)和时间响应的影响。使用调制正弦激励还可以捕获双壁CNT复合材料中四种耦合传播模式的同时存在。

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