热环境下外压作用下碳纳米管增强复合材料芯边弹性约束双弯曲夹芯板的非线性响应

H. Tung, Dao Nhu Mai, V. T. Long
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摘要

本文研究了由均质面板和碳纳米管增强复合材料(CNTRC)芯构成的双弯曲板在热环境下的非线性响应。碳纳米管(CNTs)通过均匀分布或功能梯度分布增强到核心层中。假设组分的性质与温度有关,并使用扩展的混合规则确定CNTRC的有效性质。考虑几何缺陷、von Kármán-Donnell非线性、面板-基础相互作用和切向边约束弹性等因素,在一阶剪切变形理论框架下建立了控制方程。用简支板的近似解析解和伽辽金法求解了这些方程。研究结果表明:当夹层板的边界约束越严格、面板厚度越厚时,夹层板的承载能力越强;温度升高对活动边夹芯板和约束边夹芯板的承载力分别有不利和有利的影响。
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Nonlinear response of doubly curved sandwich panels with CNT-reinforced composite core and elastically restrained edges subjected to external pressure in thermal environments
An analytical investigation on the nonlinear response of doubly curved panels constructed from homogeneous face sheets and carbon nanotube reinforced composite (CNTRC) core and subjected to external pressure in thermal environments is presented in this paper. Carbon nanotubes (CNTs) are reinforced into the core layer through uniform or functionally graded distributions. The properties of constituents are assumed to be temperature dependent and effective properties of CNTRC are determined using an extended rule of mixture. Governing equations are established within the framework of first order shear deformation theory taking into account geometrical imperfection, von Kármán–Donnell nonlinearity, panel-foundation interaction and elasticity of tangential edge restraints. These equations are solved using approximate analytical solutions and Galerkin method for simply supported panels. The results reveal that load carrying capacity of sandwich panels is stronger when boundary edges are more rigorously restrained and face sheets are thicker. Furthermore, elevated temperature has deteriorative and beneficial influences on the load bearing capability of sandwich panels with movable and restrained edges, respectively.
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