Dynamic Response of Functionally Graded Carbon Nanotube Reinforced Sandwich Plate

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Abstract

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.

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Mehar, K., & Kumar Panda, S. (2018). Dynamic Response of Functionally Graded Carbon Nanotube Reinforced Sandwich Plate. In IOP Conference Series: Materials Science and Engineering (Vol. 338). Institute of Physics Publishing. https://doi.org/10.1088/1757-899X/338/1/012017

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