弹性地基上随机排列和定向碳纳米管加固复合梁的自由振动分析

Mohammed Chatbi, Zouaoui R. Harrat, Tahir Ghazoul, M. Bachir Bouiadjra
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引用次数: 0

摘要

本文的主要目的是研究碳纳米管(CNT)复合梁在温克勒-帕斯捷尔纳克弹性地基上的动态行为(自由振动响应)。受影响的梁由单壁碳纳米管(SWCNT’s)增强的聚合物基体组成,其中大量无限长的碳纳米管增强分布在线性弹性聚合物基体中。在本研究中,碳纳米管被认为是在矩阵上排列或随机定向的。本文采用了一种改进的高阶梁理论(RBT),并采用了一种新的形状函数。将沿梁横截面的位移划分为剪切和弯曲分量的精细化梁理论,首先采用Mori-Tanaka方法对复合梁的材料性能进行了估计。梁被认为是简单地支承在边缘线上。提出了求解边界条件问题的NAVIER解。由于文献中没有可比较的结果;本文的研究结果与各向同性梁的自由振动分析结果进行了比较。对纳米管的长/厚比、体积分数、振动模式等进行了参数化研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Free vibrational analysis of composite beams reinforced with randomly aligned and oriented carbon nanotubes, resting on an elastic foundation
The main interest of this paperwork is to examinate the dynamic behavior (free vibrational response) of carbon nanotubes (CNT) composite beams standing on an elastic foundation of Winkler-Pasternak’s. The affected beam consists of a polymer matrix reinforced with single-wall carbon nanotubes (SWCNT’s), in which, a large number of CNT’s reinforcement of infinite length are distributed in a linear elastic polymer matrix. In this study the CNT’s are considered either aligned or randomly oriented on the matrix. A refined high-order beam theory (RBT) is adopted in the present analysis using a new shape function. The refined beam theory which is summarized by differentiating the displacement along the beam transverse section into shear and bending components, initially the material properties of the composite beam (CNTRC) are estimated using the Mori-Tanaka’s method. The beam is considered simply supported on the edge-lines. NAVIER’s solutions are proposed to solve the boundary conditions problems. Since there are no results to compare with in the literature; the results in this study are compared with a free vibrational analysis of an isotropic beam.  Several aspects such as the length/thickness ratio, volume fraction of nanotubes, and vibrational modes are carried out in the parametric study.
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