Effect of external pressure on the vibration analysis of higher order shear deformable FG-CNTRC spherical panels

被引:0
作者
Reza Ansari
Emad Hasrati
Jalal Torabi
机构
[1] University of Guilan,Faculty of Mechanical Engineering
[2] University of Guilan,Center of Excellence for Mathematical Modelling, Optimization and Combinational Computing (MMOCC)
[3] Aalto University,Department of Civil Engineering, School of Engineering
来源
Engineering with Computers | 2022年 / 38卷
关键词
Spherical panel; Functionally graded CNTRC; Vibration; Higher order shear deformation theory;
D O I
暂无
中图分类号
学科分类号
摘要
The numerical investigation is performed on the vibration of the higher order shear deformable carbon nanotube reinforced composite (CNTRC) spherical panels subjected to the initial external pressure. The functionally graded nanocomposite is reinforced with the non-uniform distribution of CNTs. The problem is formulated following the higher order shear deformation shell theory (HSDT) within the variational differential quadrature numerical approach. For this purpose, the direct discretization of Hamilton’s principle is carried out with the aid of differential quadrature operators. Derivation of the variational formulation of nanocomposite spherical panels based on the HSDT and studying the effects of external pressure on the vibration behavior are the main novel aspects of this research. Several numerical examples are provided to survey the impacts of geometrical and material factors on the vibration of pressurized functionally graded CNTRC spherical panels. It is shown that the internal pressure has the most influence on the vibrational behavior of the thicker panel.
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页码:43 / 54
页数:11
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  • [1] Shen HS(2009)Nonlinear bending of functionally graded carbon nanotube-reinforced composite plates in thermal environments Compos Struct 91 9-19
  • [2] Lei ZX(2013)Buckling analysis of functionally graded carbon nanotube-reinforced composite plates using the element-free kp-Ritz method Compos Struct 98 160-168
  • [3] Liew KM(2013)Free vibration analysis of functionally graded carbon nanotube-reinforced composite plates using the element-free kp-Ritz method in thermal environment Compos Struct 106 128-138
  • [4] Yu JL(2019)Vibration analysis of porous magneto-electro-elastically actuated carbon nanotube-reinforced composite sandwich plate based on a refined plate theory Eng Comput 181 653-669
  • [5] Lei ZX(2019)A comprehensive study on the free vibration of arbitrary shaped thick functionally graded CNT-reinforced composite plates Eng Struct 73 144-160
  • [6] Liew KM(2019)Numerical study on the thermal buckling analysis of CNT-reinforced composite plates with different shapes based on the higher-order shear deformation theory Euro J Mech-A/Solids 77 1294-1311
  • [7] Yu JL(2019)Thermal buckling analysis of temperature-dependent FG-CNTRC quadrilateral plates Comput Math Appl 6 125086-699
  • [8] Ebrahimi F(2019)A new numerical approach for low velocity impact response of multiscale-reinforced nanocomposite plates Eng Comput 347 679-1172
  • [9] Farazmandnia N(2019)Vibration analysis of FG-CNTRC plates with an arbitrarily shaped cutout based on the variational differential quadrature finite element method Materials Res Express 26 1157-200
  • [10] Kokaba MR(2019)Nonlinear dynamic analysis of piezoelectric-bonded FG-CNTR composite structures using an improved FSDT theory Eng Comput 117 187-282