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Nano-composite insert in 1D waveguides for control of elastic power flow

机译:一维波导中的纳米复合材料插入物,用于控制弹性能流

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摘要

In this paper, carbon nanotube embedded polymer compositeano-composites are used to regulate power flow from its source to other parts of the structure. This is done by inserting nano-composite strips in the waveguides which are modelled here as isotropic Euler-Bernoulli beams with axial, transverse and rotational degrees of freedom. The power flow is due to wave propagation resulting from a high frequency broadband impulse load. The underlying concept is that the high stiffness of the insert reduces the wave transmission between different parts of the structures. The simulations are done using a wavelet based spectral finite element (WSFE) technique which is specially tailored for such high frequency wave propagation analysis. Numerical experiments are performed to illustrate the use of inserts in maintaining the power flow in a certain region of the structure below a given threshold value which may be specified depending on various applications. The effects of parameters such as the volume fraction of carbon nanotube (CNT) in the polymer, and the length and position of the inserts are also studied. These studies help in defining the optimal volume fraction of CNT and length of the insert for a specified structural configuration.
机译:在本文中,碳纳米管嵌入的聚合物复合材料/纳米复合材料用于调节从其来源到结构其他部分的功率流。这是通过在波导中插入纳米复合材料条来实现的,在此将其建模为具有轴向,横向和旋转自由度的各向同性Euler-Bernoulli光束。功率流归因于高频宽带脉冲负载产生的波传播。基本概念是插入件的高刚度降低了结构不同部分之间的波传播。仿真是使用基于小波的频谱有限元(WSFE)技术完成的,该技术专门针对此类高频波传播分析而设计。进行数值实验以说明在维持结构的某个区域中的功率流低于给定阈值的情况下使用插入物,该阈值可以根据各种应用而指定。还研究了诸如聚合物中碳纳米管(CNT)的体积分数以及插入物的长度和位置等参数的影响。这些研究有助于确定特定结构构型的CNT的最佳体积分数和插入物的长度。

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