4.7 Article

Dynamic response of functionally graded porous-core sandwich plates subjected to blast load using ES-MITC3 element

Journal

COMPOSITE STRUCTURES
Volume 309, Issue -, Pages -

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.compstruct.2023.116722

Keywords

Sandwich plates; Functionally graded porous material; Finite element method; ES-MITC3; Forced vibration; Blast load; Newmark-beta approach

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The main objective of this paper is to propose the ES-MITC3 element for the dynamic analysis of sandwich plates with a functionally graded porous core subjected to blast load. The ES-MITC3 element is created to enhance the accuracy and convergence of the MITC3 element as well as the traditional triangular element. The governing equations of sandwich plates are inferred using Hamilton's principle, and the linear differential equations are solved using the Newmark-beta approach. Several studies confirm the performance of the proposed method, and new numerical results on the vibration characteristic of sandwich plates are provided.
The main objective of this paper is to use the combination of the edge-based smoothed finite element method (ES-FEM) and mixed interpolation of tensorial components triangular (MITC3) element. As a result, the so-called ES-MITC3 element is proposed for the dynamic analysis of sandwich plates with a functionally graded porous (FGP) core subjected to blast load. Sandwich plates include a bottom layer made of homogeneous metal, an all -ceramic top layer and a FGP core layer with uneven porosity distribution. The ES-MITC3 element is created to enhance the accuracy and convergence of the MITC3 element as well as the traditional triangular element. Employing Hamilton's principle, governing equations of sandwich plates are inferred. Then, solving linear dif-ferential equations is conducted by using the Newmark-beta approach. A few studies are conducted to confirm the performance of the current method. Finally, the new numerical results on the vibration characteristic of sandwich plates are provided.

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