Generalized shear deformation theory for bending analysis of functionally graded plates
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Koizumi, 1993, The concept of FGM, Ceramic Trans. Funct. Grad. Mater., 34, 3
M. Yamanouchi, M. Koizumi, T. Hirai, I. Shiota, in: Proceeding of the First International Symposium on Functionally Gradient Materials, Sendai, Japan, 1990.
Reddy, 2000, Analysis of functionally graded plates, Int. J. Numer. Methods Eng., 47, 663, 10.1002/(SICI)1097-0207(20000110/30)47:1/3<663::AID-NME787>3.0.CO;2-8
Cheng, 2000, Deflection relationships between the homogeneous Kirchhoff plate theory and different functionally graded plate theories, Arch. Mech., 52, 143
Cheng, 2000, Exact correspondence between eigenvalues of membranes and functionally graded simply supported polygonal plates, J. Sound Vib., 229, 879, 10.1006/jsvi.1999.2525
Loy, 1999, Vibration of functionally graded cylindrical shells, Int. J. Mech. Sic., 41, 309, 10.1016/S0020-7403(98)00054-X
Cheng, 2000, Three-dimensional thermoelastic deformations of a functionally graded elliptic plate, Composites: Part B, 31, 97, 10.1016/S1359-8368(99)00069-4
Vel, 2002, Exact solution for thermoelastic deformations of functionally graded thick rectangular plates, AIAA J., 40, 1421, 10.2514/2.1805
Reiter, 1997, Micromechanical models for graded composite materials, J. Mech. Phys. Solids, 45, 1281, 10.1016/S0022-5096(97)00007-0
Tanigawa, 1992, Theoretical approach of optimum design for a plate of functionally gradient materials under thermal loading, Ther. Shock Ther. Fat. Behav. Adv. Cer., NATO ASI Series E, 241, 171
Tanaka, 1993, Design of thermoelastic materials using direct sensitivity and optimization methods: reduction of thermal stresses in functionally gradient materials, Comput. Methods Appl. Mech. Eng., 106, 271, 10.1016/0045-7825(93)90193-2
Tanaka, 1993, An improved solution to thermoelastic materials designed in functionally gradient materials: scheme to reduce thermal stresses, Comput. Methods Appl. Mech. Eng., 106, 377, 10.1016/0045-7825(93)90088-F
Jin, 1993, Minimization of thermal stress intensity factor for a crack in a metal-ceramic mixture, Ceramic Trans. Funct. Grad. Mater., 34, 47
Noda, 1993, Thermal stress intensity factors for a crack in a strip of a functionally gradient material, Int. J. Solids Struct., 30, 1039, 10.1016/0020-7683(93)90002-O
Jin, 1994, Transient thermal stress intensity factors for a crack in a semi-infinite plate of a functionally gradient material, Int. J. Solids Struct., 31, 203, 10.1016/0020-7683(94)90050-7
Obata, 1994, Steady thermal stresses in a hollow circular cylinder and a hollow sphere of a functionally gradient material, J. Thermal Stresses, 17, 471, 10.1080/01495739408946273
Obata, 1992, Steady thermal stresses in a functionally gradient material plate, Trans. JSME, 58, 1689, 10.1299/kikaia.58.1689
Praveen, 1998, Nonlinear transient thermoelastic analysis of functionally graded ceramic–metal plates, Int. J. Solids Struct., 35, 4457, 10.1016/S0020-7683(97)00253-9
Reddy, 1998, Thermomechanical analysis of functionally graded cylinders and plates, J. Thermal Stresses, 21, 593, 10.1080/01495739808956165
Najafizadeh, 2002, Buckling analysis of circular plates of functionally graded materials under uniform radial compression, Int. J. Mech. Sci., 44, 2479, 10.1016/S0020-7403(02)00186-8
Zenkour, 2004, Analytical solution for bending of cross-ply laminated plates under thermo-mechanical loading, Compos. Struct., 65, 367, 10.1016/j.compstruct.2003.11.012
Zenkour, 2004, Buckling of fiber-reinforced viscoelastic composite plates using various plate theories, J. Eng. Math., 50, 75, 10.1023/B:ENGI.0000042123.94111.35
Zenkour, 2004, Thermal effects on the bending response of fiber-reinforced viscoelastic composite plates using a sinusoidal shear deformation theory, Acta Mech., 171, 171, 10.1007/s00707-004-0145-7
Timoshenko, 1959