"Thermal buckling analysis of ceramic-metal functionally graded plates"
written by Ashraf M. Zenkour, Daoud S. Mashat,
published by Natural Science, Vol.2 No.9, 2010
has been cited by the following article(s):
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[9] Quasi-3D higher-order shear deformation theory for thermal buckling analysis of FGM plates based on a meshless method
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[10] Thermal Buckling Behaviour of Functionally Graded Plates.
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[11] Thermal Buckling Behaviour of Functionally Graded Plates
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[14] Comparative thermal buckling analysis of functionally graded plate
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[15] Thermal Buckling Analysis Of Functionally Graded Plates Using Power Law Function
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[16] Thermal buckling response of functionally graded sandwich plates with clamped boundary conditions
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[17] An analytical approach for buckling of functionally graded plates
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[18] Determination of critical buckling loads of isotropic, FGM and laminated truncated conical panel
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[19] Numerical analysis of FGM plates with variable thickness subjected to thermal buckling
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[20] Analysis of brittle fracture characteristics of an infinite plate with an FGM coating around a circular hole
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[21] Contribution à l'Etude de la Stabilité des Plaques Epaisses en Composite sur Fondations Elastiques
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[22] Thermal Buckling Response of Functionally Graded Plates with Clamped Boundary Conditions
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[23] Response of Functionally Graded Material Plate under Thermomechanical Load Subjected to Various Boundary Conditions
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[24] Thermal Buckling Analysis of Perforated Functionally Graded Plates
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[25] Buckling Analysis of Rectangular Functionally Graded Plates with an Elliptic Hole Under Thermal Loads
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[26] Thermal buckling of functionally graded plates using a n-order four variable refined theory
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[27] A refined and simple shear deformation theory for thermal buckling of solar functionally graded plates on elastic foundation
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[28] Static Response of Functionally Graded Material Plate under Transverse Load for Varying Aspect Ratio Manish Bhandari Dr. Kamlesh
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[29] Analysis of functionally graded material plates using triangular elements with cell-based smoothed discrete shear gap method
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[30] Analysis of Functionally Graded Material Plate under Transverse Load for Various Boundary Conditions
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[31] A parametric study on the buckling of functionally graded material plates with internal discontinuities using the partition of unity method
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[32] Thermal Buckling Analysis of Functionally Graded Plates on an Elastic Foundation According to a Hyperbolic Shear Deformation The
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[33] The Buckling Analysis of Functionally Graded Material Plates in temperature environment
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[34] Associate Professor Jodhpur Institute of Technology, Jodhpur, Rajasthan Professor 2 & HOD, JNVU, Jodhpur, Rajasthan
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[35] Static Response of Functionally Graded Material Plate under Transverse Load for Varying Aspect Ratio
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[36] Thermoelastic buckling response of thick functionally graded plates
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[37] Functionally Graded Material Plate Subject to Thermomechanical Loading: A Review
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[38] Comparison of Functionally Graded Material Plate with Metaland Ceramic Plateunder Transverse Loadfor Various Boundary Conditions
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[39] Термоупругая задача о выпучивании толстых пластин, изготовленных из функционально-градиентного материала
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[40] Thermal Stress and Buckling Analysis of Functionally Graded Plates
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[41] Buckling analysis of rectangular functionally graded plates under various edge conditions using Fourier series expansion
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[42] Nonlinear thermal buckling behavior of functionally graded plates using an efficient sinusoidal shear deformation theory
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[43] Thermal buckling of functionally graded plates according to a four-variable refined plate theory
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