Computers and Concrete

Volume 29, Number 2, 2022, pages 117-126

DOI: 10.12989/cac.2022.29.2.117

Design of intelligent estimation of composite fluid-filled shell for three layered active control structure

Madiha Ghamkhar , Muzamal Hussain , Mohamed A. Khadimallah , Hamdi Ayed , Muhammad Yasin Naz , Abdelouahed Tounsi

Abstract

The vibrational characteristic of three-layered cylindrical shell (CS) submerged in fluid with the ring support has been studied. The inner and outer layer is supposed to construct by isotropic layer. The composition of central layer is of functionally graded material type. Acoustic Wave condition has been utilized to present the impact of fluid. The central layer of cylindrical shell (CS) varies by volume fraction law that has been expressed in terms of polynomial. The main shell frequency equation has been obtained by theory of Love's shell and Rayleigh-Ritz technique. The oscillation of natural frequency has been examined under a variety of end conditions. The dependence of axial model has been executed with the help of characteristic beam function. The natural frequencies (NFs) of functionally graded material (FGM) shell have been observed of cylindrical shell along the shell axial direction. Different physical parameters has been used to examine the vibration characteristics due to the effect of volume fraction law. MATLAB software has been used to get result.

Key Words

axial direction; beam function; fraction law; love's shell; MATLAB software; three-layered

Address

PDF Viewer

Preview is limited to the first 3 pages. Sign in to access the full PDF.

Loading…