Javascript must be enabled to continue!
Review of research on the vibration and buckling of functionally graded spherical shells
View through CrossRef
Spherical shells are important components in many aerospace and engineering structures. A functionally graded material (FGM) spherical shell can have its material distribution varied with the change of the radius direction, which can enhance the bearing capacity and the stability of the thin-walled shells. However, due to the special geometric characteristics of the spherical shell, the simplicity of its geometry will lead to great complexity in its vibration and buckling analysis processes. This paper mainly reviews the previous analytical and numerical research on the vibration and buckling of the FGM spherical shell. The shell's middle plane equilibrium equations are derived from plate theory. The Galerkin method, the Ritz method, the power series solution method, and other methods are introduced to carry out the vibration and buckling analysis. The frequencies, mode shapes, and the critical buckling load of the FGM spherical shells, which are under various boundary conditions and external pressure.
Title: Review of research on the vibration and buckling of functionally graded spherical shells
Description:
Spherical shells are important components in many aerospace and engineering structures.
A functionally graded material (FGM) spherical shell can have its material distribution varied with the change of the radius direction, which can enhance the bearing capacity and the stability of the thin-walled shells.
However, due to the special geometric characteristics of the spherical shell, the simplicity of its geometry will lead to great complexity in its vibration and buckling analysis processes.
This paper mainly reviews the previous analytical and numerical research on the vibration and buckling of the FGM spherical shell.
The shell's middle plane equilibrium equations are derived from plate theory.
The Galerkin method, the Ritz method, the power series solution method, and other methods are introduced to carry out the vibration and buckling analysis.
The frequencies, mode shapes, and the critical buckling load of the FGM spherical shells, which are under various boundary conditions and external pressure.
Related Results
Experimental Study Of Curvature And Frictional Effects On Buckling
Experimental Study Of Curvature And Frictional Effects On Buckling
ABSTRACT
Buckling and post-buckling lock-up place a limit on the reach of extended-reach and horizontal wells. Although buckling has received considerable theoret...
Nonlinear Dynamic Snap-Through Buckling of Composite Laminated Spherical Shells
Nonlinear Dynamic Snap-Through Buckling of Composite Laminated Spherical Shells
Abstract
In this paper, a general, strain-consistent, third-order displacement field of shells is proposed. On this basis, the nonlinear theory of composite laminate...
Nonlinear Vibration of a Functionally Graded Nanobeam Based on the Nonlocal Strain Gradient Theory considering Thickness Effect
Nonlinear Vibration of a Functionally Graded Nanobeam Based on the Nonlocal Strain Gradient Theory considering Thickness Effect
In this work, a nonlocal strain gradient beam model considering the thickness effect is developed to study the nonlinear vibration response of a functionally graded nanobeam. The g...
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Abstract
The Physical Activity Guidelines for Americans (Guidelines) advises older adults to be as active as possible. Yet, despite the well documented benefits of physical a...
Suction Pile Allowable Suction Pressure Envelopes Based on Soil Failure and Structural Buckling
Suction Pile Allowable Suction Pressure Envelopes Based on Soil Failure and Structural Buckling
Abstract
This study develops the allowable suction pressure envelopes using applicable industrial codes for different suction pile sizes at various penetration depth...
Buckling of Concentric String Pipe-in-Pipe
Buckling of Concentric String Pipe-in-Pipe
Abstract
During the design stage of concentric tubular strings, the outer string is always considered to be rigid. However, in reality, the outer string can become d...
The Buckling of Fuel Rods Under Inertia Loading
The Buckling of Fuel Rods Under Inertia Loading
The buckling analysis of fuel rods during an end drop impact of a spent fuel transportation cask has traditionally been performed to demonstrate the structural integrity of the fue...
Experimental research on compressive strength of UHPC spherical hinge
Experimental research on compressive strength of UHPC spherical hinge
Purpose
In order to reduce the impact of bridge construction on traffic under the bridge, the construction of bridges for some important traffic nodes usually adopts the swivel con...

