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Free vibration, bending and buckling of a FG-CNT reinforced composite beam Comparative analysis with hybrid laminated composite beam

机译:FG-CNT增强复合材料梁的自由振动,弯曲和屈曲与混合层合复合材料梁的比较分析

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Purpose - The purpose of this paper is to perform a numerical analysis on the static and dynamic behaviors of beams made up of functionally graded carbon nanotube (FG-CNT) reinforced polymer and hybrid laminated composite containing the layers of carbon reinforced polymer with CNT. Conventional fibers have higher density as compared to carbon nanotubes (CNTs), thus insertion of FG-CNT reinforced polymer layer in fiber reinforced composite (FRC) structures makes them sustainable candidate for weight critical applications. Design/methodology/approach - In this context, stress and strain formulations of a multi-layer composite system is determined with the help of Timoshenko hypothesis and then the principle of virtual work is employed to derive the governing equations of motion. Herein, extended rule of mixture and conventional micromechanics relations are used to evaluate the material properties of carbon nanotube reinforced composite (CNTRC) layer and FRC layer, respectively. A generalized eigenvalue problem is formulated using finite element approach and is solved for single layer FG-CNTRC beam and multi-layer laminated hybrid composite beam by a user-interactive MATLAB code. Findings - First, the natural frequencies of FG-CNTRC beam are computed and compared with previously available results as well as with Ritz approximation outcomes. Further, free vibration, bending, and buckling analysis is carried out for FG-CNTRC beam to interpret the effect of different CNT volume fraction, number of walls in nanotube, distribution profiles, boundary conditions, and beam-slenderness ratios. Originality/value - A free vibration analysis of hybrid laminated composite beam with two different layer stacking sequence is performed to present the advantages of hybrid laminated beam over the conventional FRC beam.
机译:目的-本文的目的是对功能梯度碳纳米管(FG-CNT)增强聚合物和包含碳增强聚合物和CNT层的混合层压复合材料制成的梁的静态和动态行为进行数值分析。与碳纳米管(CNT)相比,常规纤维具有更高的密度,因此在纤维增强复合材料(FRC)结构中插入FG-CNT增强聚合物层使其成为重量关键型应用的可持续候选者。设计/方法/方法-在这种情况下,借助Timoshenko假设确定多层复合系统的应力和应变公式,然后采用虚拟功原理推导运动的控制方程。在此,使用扩展的混合规则和常规的微力学关系分别评估碳纳米管增强复合材料(CNTRC)层和FRC层的材料性能。使用有限元方法建立了广义特征值问题,并通过用户交互MATLAB代码解决了单层FG-CNTRC梁和多层层压混合复合梁的问题。发现-首先,计算出FG-CNTRC光束的固有频率,并将其与先前可获得的结果以及Ritz近似结果进行比较。此外,对FG-CNTRC束进行了自由振动,弯曲和屈曲分析,以解释不同的CNT体积分数,纳米管中的壁数,分布轮廓,边界条件和束细长比的影响。独创性/价值-对具有两种不同层堆叠顺序的混合层压复合梁进行了自由振动分析,以展示混合层压梁相对于传统FRC梁的优势。

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