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Vibration Analysis of Composite Horizontal Cylindrical Tank with Different Layering Using the Finite Element Method


Affiliations
1 Department of Mechanical Engineering , Hamedan Branch, Islamic Azad University, Hamedan, Iran, Islamic Republic of
2 Department of Mechanics, College of Engineering, Hamedan Science and Research Branch, Islamic Azad University, Hamedan, Iran, Islamic Republic of
 

This paper focuses on the vibration analysis of composite cylindrical tank. The purpose of this study is comparison of natural frequencies with different layering and different fiber angle along the x-axis of the tank. The boundary conditions of the tank are located at the beginning and the end of tank. The tank fixed along the coordinate system (y, z) and is free in x-axis. Stability equations derived using the first-order shear deformation theory. The effect of layering and fiber angle has evaluated by using the finite element package ANSYS. The angle considered between -90 to 90 degrees also 0 to 90 degrees for position of fibers along the thickness, which distributed in the form of symmetrical and asymmetric. Finally, the natural frequencies of the tank under the effect of layering of composite in radial direction compared. The results shown that the number of layers and fiber orientation affected on the natural frequencies.

Keywords

Cylindrical Tank, Composite, Finite Element, Natural Frequencies.
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  • Vibration Analysis of Composite Horizontal Cylindrical Tank with Different Layering Using the Finite Element Method

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Authors

Hossein Farahani
Department of Mechanical Engineering , Hamedan Branch, Islamic Azad University, Hamedan, Iran, Islamic Republic of
Farzan Barati
Department of Mechanical Engineering , Hamedan Branch, Islamic Azad University, Hamedan, Iran, Islamic Republic of
Hamid Batmani
Department of Mechanics, College of Engineering, Hamedan Science and Research Branch, Islamic Azad University, Hamedan, Iran, Islamic Republic of

Abstract


This paper focuses on the vibration analysis of composite cylindrical tank. The purpose of this study is comparison of natural frequencies with different layering and different fiber angle along the x-axis of the tank. The boundary conditions of the tank are located at the beginning and the end of tank. The tank fixed along the coordinate system (y, z) and is free in x-axis. Stability equations derived using the first-order shear deformation theory. The effect of layering and fiber angle has evaluated by using the finite element package ANSYS. The angle considered between -90 to 90 degrees also 0 to 90 degrees for position of fibers along the thickness, which distributed in the form of symmetrical and asymmetric. Finally, the natural frequencies of the tank under the effect of layering of composite in radial direction compared. The results shown that the number of layers and fiber orientation affected on the natural frequencies.

Keywords


Cylindrical Tank, Composite, Finite Element, Natural Frequencies.



DOI: https://doi.org/10.17485/ijst%2F2015%2Fv8iS7%2F74797