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Higher-Order Thermo-Elastic Analysis of FG-CNTRC Cylindrical Vessels Surrounded by a Pasternak Foundation

机译:Pasternak基础包围FG-CNTRC圆柱血管的高阶热弹性分析

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摘要

This study analyses the two-dimensional thermo-elastic response of functionally graded carbon nanotube-reinforced composite (FG-CNTRC) cylindrical pressure vessels, by applying the third-order shear deformation theory (TSDT). The effective properties of FG-CNTRC cylindrical pressure vessels are computed for different patterns of reinforcement, according to the rule of mixture. The governing equations of the problem are derived from the principle of virtual works and are solved as a classical eigenproblem under the assumption of clamped supported boundary conditions. A large parametric investigation aims at showing the influence of some meaningful parameters on the thermo-elastic response, such as the type of pattern, the volume fraction of CNTs, and the Pasternak coefficients related to the elastic foundation.
机译:该研究通过施加三阶剪切变形理论(TSDT)来分析功能梯碳纳米管增强复合材料(FG-CNTRC)圆柱形压力容器的二维热弹性响应。根据混合物的规则,计算FG-CNTRC圆柱形压力容器的有效性能。问题的控制方程源自虚拟作品的原理,并且在钳位支持的边界条件的假设下被解析为经典的特征问题。一个大的参数调查旨在显示一些有意义的参数对热弹性响应的影响,例如模式的类型,CNT的体积分数以及与弹性基础有关的帕斯特纳克系数。

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