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Linear static response of nanocomposite plates and shells reinforced by agglomerated carbon nanotubes

机译:团聚碳纳米管增强的纳米复合板和壳的线性静态响应

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The static response of composite plates and shells reinforced by agglomerated nanoparticles made of Carbon Nanotubes (CNTs) is investigated in the present paper. A two-parameter agglomeration model is taken into account to describe the micromechanics of such particles, which show the tendency to agglomerate into spherical regions when scattered in a polymer matrix. From the macro mechanical point of view, the structures under consideration are characterized by a gradual variation of their mechanical properties along the thickness direction, since various distributions are employed to describe the volume fraction of the reinforcing phase. Several Higher-order Shear Deformation Theories (HSDTs) are taken into account and compared. The fundamental equations which govern the static problem in hand are solved numerically by means of the Generalized Differential Quadrature (GDQ) method. The variation of the agglomeration parameters, as well as the through-the-thickness profiles which describe the CNT volume fraction, are investigated to show the effect of the reinforcing phase on the static response of these nanocomposite plates and shells. In particular, a posteriori stress and strain recovery procedure is developed for these purposes. The current approach is validated through the comparison with the results available in the literature or obtained by a three-dimensional finite element model. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文研究了由碳纳米管(CNTs)制成的团聚纳米颗粒增强的复合板和壳的静态响应。考虑到两参数的团聚模型来描述这种颗粒的微力学,当分散在聚合物基质中时,它们表现出团聚成球形区域的趋势。从宏观力学的角度来看,所考虑的结构的特征在于其机械性能沿厚度方向的逐渐变化,因为采用了各种分布来描述增强相的体积分数。考虑并比较了几种高阶剪切变形理论(HSDT)。借助通用差分正交(GDQ)方法,可以数字化地解决控制静态问题的基本方程。研究了附聚参数的变化以及描述CNT体积分数的贯穿厚度的分布图,以显示增强相对这些纳米复合板和壳的静态响应的影响。特别地,出于这些目的,开发了后验应力和应变恢复程序。通过与文献中可获得的结果或通过三维有限元模型获得的结果进行比较,可以验证当前方法。 (C)2016 Elsevier Ltd.保留所有权利。

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