Geometrically nonlinear analysis of sandwich composite beams reinforced by agglomeration carbon nanotubes

Thi Thu Hoai Bui, Thi Thom Tran, D. Nguyen
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Abstract

In this work, geometrically nonlinear behavior of sandwich composite beams reinforced by carbon nanotubes is studied, taking into account the influence of agglomeration of the carbon nanotubes (CNTs). The core of the sandwich beams is homogeneous while the two face sheets are made of CNT reinforced composite with the effective material properties being estimated by the Eshelby-Mori-Tanaka approach. A first-order shear deformable nonlinear beam element is formulated in the context of the total Lagrange formulation and used to construct the discretized nonlinear equilibrium equation. The Newton-Raphson based iterative procedure is used in conjunction with the arc-length method to trace the equilibrium paths of the beams. Detail parametric studies are carried out to illustrate the influence of the CNTs agglomeration, the amount of CNT volume fraction as well as the thicknesses of face sheets on the nonlinear behavior of the structure.
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团聚碳纳米管增强夹层复合材料梁的几何非线性分析
本文研究了碳纳米管增强夹层复合梁的几何非线性行为,并考虑了碳纳米管团聚的影响。夹层梁的核心是均匀的,而两个面板由碳纳米管增强复合材料制成,有效材料性能由Eshelby-Mori-Tanaka方法估计。在全拉格朗日公式的基础上,建立了一阶剪切变形非线性梁单元,并用于构造离散化的非线性平衡方程。采用牛顿-拉夫逊迭代法结合弧长法对光束的平衡路径进行了跟踪。详细的参数研究说明了碳纳米管团聚的影响,碳纳米管体积分数的数量以及面片的厚度对结构的非线性行为。
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