Buckling analysis of nanocomposite beams based on refined beam theory by considering the Agglomeration effect of CNTs

Ihab Eddine Houalef, Ismail Bensaid, Ahmed Saimi
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Abstract

The present work deals with buckling load behavior of nanocomposite beams by considering the agglomeration effect of single-walled carbon nanotubes (CNTs) and different patterns CNTs in polymeric matrix. The material properties of nanocomposite beams are estimated using the Eshelby–Mori– Tanaka approach based on an equivalent fiber. The equations of motion are derived based on refined beam strain gradient theory, employing Hamilton’s principle and using Differential Quadrature Finite Element Method (DQFEM) derived from the differential quadrature method (DQM). The results are compared with analytical results in the literature. It is remarked that mechanical properties and therefore critical buckling loads of nanocomposite beam are seriously affected by CNTs agglomeration.
考虑碳纳米管团聚效应的基于精细化梁理论的纳米复合材料梁屈曲分析
本文通过考虑单壁碳纳米管(CNTs)和不同碳纳米管在聚合物基体中的团聚效应,研究了纳米复合材料梁的屈曲载荷行为。采用基于等效纤维的Eshelby-Mori - Tanaka方法对纳米复合梁的材料性能进行了估计。基于精细化梁应变梯度理论,采用Hamilton原理,采用微分正交有限元法(DQFEM)推导出梁的运动方程。结果与文献中的分析结果进行了比较。研究表明,碳纳米管团聚对纳米复合材料梁的力学性能和临界屈曲载荷有重要影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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