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Buckling response with stretching effect of carbon nanotube-reinforced composite beams resting on elastic foundation

机译:碳纳米管增强复合梁在弹性基础上的拉伸效应与屈曲响应

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This study deals with buckling analysis with stretching effect of functionally graded carbon nanotube-reinforced composite beams resting on an elastic foundation. The single-walled carbon nanotubes (SWCNTs) are aligned and distributed in polymeric matrix with different patterns of reinforcement. The material properties of the CNTRC beams are estimated by using the rule of mixture. The significant feature of this model is that, in addition to including the shear deformation effect and stretching effect it deals with only 4 unknowns without including a shear correction factor. The equilibrium equations have been obtained using the principle of virtual displacements. The mathematical models provided in this paper are numerically validated by comparison with some available results. New results of buckling analyses of CNTRC beams based on the present theory with stretching effect is presented and discussed in details. the effects of different parameters of the beam on the buckling responses of CNTRC beam are discussed.
机译:这项研究涉及具有弹性基础上功能梯度碳纳米管增强复合材料梁的拉伸效应的屈曲分析。单壁碳纳米管(SWCNT)排列并分布在具有不同增强图案的聚合物基质中。 CNTRC梁的材料特性通过混合法则进行估算。该模型的显着特征是,除了包括剪切变形效应和拉伸效应之外,它仅处理4个未知数,而没有包括剪切校正因子。平衡方程是使用虚拟位移原理获得的。通过与一些可用结果进行比较,对本文提供的数学模型进行了数值验证。提出并详细讨论了基于本理论并具有拉伸作用的碳纳米管梁屈曲分析的新结果。讨论了梁的不同参数对CNTRC梁屈曲响应的影响。

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