FREE VIBRATION AND BUCKLING OF FUNCTIONALLY GRADED SHELL PANELS IN THERMAL ENVIRONMENTS
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Publication:2846036
DOI10.1142/S0219455410003889zbMath1271.74176MaRDI QIDQ2846036
S. Pradyumna, Jayendra N. Bandyopadhyay
Publication date: 5 September 2013
Published in: International Journal of Structural Stability and Dynamics (Search for Journal in Brave)
bucklingfunctionally graded materialsfree vibrationhigher-order shear deformation theoryshell panels
Vibrations in dynamical problems in solid mechanics (74H45) Inhomogeneity in solid mechanics (74E05) Thermal effects in solid mechanics (74F05) Bifurcation and buckling (74G60) Shells (74K25)
Related Items (4)
Static and free vibration analysis of sandwich cylindrical shell based on theory of elasticity and using DQM ⋮ Application of the R‐functions in free vibration analysis of FGM plates and shallow shells with temperature dependent properties ⋮ DYNAMIC STABILITY CHARACTERISTICS OF FUNCTIONALLY GRADED PLATES UNDER ARBITRARY PERIODIC LOADS ⋮ Radial Basis Function-Based Stochastic Natural Frequencies Analysis of Functionally Graded Plates
Cites Work
- Torsional buckling and postbuckling of FGM cylindrical shells in thermal environments
- Nonlinear transient thermoelastic analysis of functionally graded ceramic-metal plates
- Postbuckling of piezoelectric FGM plates subject to thermo-electro-mechanical loading.
- Nonlinear vibration and dynamic response of functionally graded plates in thermal environments
- Postbuckling analysis of axially loaded functionally graded cylindrical panels in thermal environments
- Nonlinear vibration of a coating-FGM-substrate cylindrical panel subjected to a temperature gradient
- Postbuckling of FGM cylindrical shells under combined axial and radial mechanical loads in thermal environments
- Thermo-mechanical post-buckling of FGM cylindrical panels with temperature-dependent properties
- Three-dimensional vibration analysis of fluid-filled orthotropic FGM cylindrical shells
- Vibration suppression of FGM shells using embedded magnetostrictive layers
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