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Dynamic Response of Functionally Graded Carbon Nanotube Reinforced Sandwich Plate

机译:功能梯度碳纳米管增强夹层板的动力响应

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In this article, the dynamic response of the carbon nanotube-reinforced functionally graded sandwich composite plate has been studied numerically with the help of finite element method. The face sheets of the sandwich composite plate are made of carbon nanotube-reinforced composite for two different grading patterns whereas the core phase is taken as isotropic material. The final properties of the structure are calculated using the rule of mixture. The geometrical model of the sandwich plate is developed and discretized suitably with the help of available shell element in ANSYS library. Subsequently, the corresponding numerical dynamic responses computed via batch input technique (parametric design language code in ANSYS) of ANSYS including Newmark's integration scheme. The stability of the sandwich structural numerical model is established through the proper convergence study. Further, the reliability of the sandwich model is checked by comparison study between present and available results from references. As a final point, some numerical problems have been solved to examine the effect of different design constraints (carbon nanotube distribution pattern, core to face thickness ratio, volume fractions of the nanotube, length to thickness ratio, aspect ratio and constraints at edges) on the time-responses of sandwich plate.
机译:在本文中,所述碳纳米管强化功能梯度夹层复合板的动态响应已经数值采用有限元法的帮助下学习。而芯相被取为各向同性材料的夹层复合板的面片由碳的纳米管强化复合两个不同的分级图案。该结构的最终性质是使用混合物的规则计算。夹心板的几何模型的开发和可用壳单元在ANSYS库的帮助下适当离散化。随后,相应的数值的动态响应经由ANSYS的批量输入技术(在ANSYS参数化设计语言代码)包括纽马克的集成方案计算的。夹层结构数值模型的稳定性是通过适当的会聚研究建立。此外,夹层模型的可靠性是通过从引用本和可用的结果之间的比较研究检查。作为最后一点,一些数值问题已解决审查的不同设计约束(碳纳米管分布图案,芯面厚度比,所述纳米管的体积分数,长度与厚度比,纵横比和约束中的边缘)的效果上夹层板的时间响应。

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