Thermoelastic stability of functionally graded truncated conical shells

[1]  B. P. Patel,et al.  Thermal postbuckling analysis of laminated cross-ply truncated circular conical shells , 2005 .

[2]  Lanhe Wu,et al.  Thermoelastic stability of functionally graded cylindrical shells , 2005 .

[3]  Abdullah H. Sofiyev,et al.  The stability of compositionally graded ceramic–metal cylindrical shells under aperiodic axial impulsive loading , 2005 .

[4]  B. P. Patel,et al.  Thermal buckling of laminated cross-ply oval cylindrical shells , 2004 .

[5]  A. H. Sofiyev,et al.  The stability of functionally graded truncated conical shells subjected to aperiodic impulsive loading , 2004 .

[6]  Wu Lanhe,et al.  THERMAL BUCKLING OF A SIMPLY SUPPORTED MODERATELY THICK RECTANGULAR FGM PLATE , 2004 .

[7]  Hui‐Shen Shen Thermal postbuckling behavior of functionally graded cylindrical shells with temperature-dependent properties , 2004 .

[8]  A. H. Sofiyev,et al.  Dynamic buckling of functionally graded cylindrical thin shells under non-periodic impulsive loading , 2003 .

[9]  K. Liew,et al.  Thermomechanical postbuckling analysis of functionally graded plates and shallow cylindrical shells , 2003 .

[10]  M. R. Eslami,et al.  THERMAL BUCKLING OF FUNCTIONALLY GRADED CYLINDRICAL SHELL , 2003 .

[11]  Hui-Shen Shen,et al.  POSTBUCKLING ANALYSIS OF PRESSURE-LOADED FUNCTIONALLY GRADED CYLINDRICAL SHELLS IN THERMAL ENVIRONMENTS , 2003 .

[12]  K. M. Liew,et al.  Active control of FGM shells subjected to a temperature gradient via piezoelectric sensor/actuator patches , 2002 .

[13]  Shih-Jung Chiu,et al.  Thermally induced dynamic instability of laminated composite conical shells , 2002 .

[14]  M. R. Eslami,et al.  THERMAL BUCKLING OF FUNCTIONALLY GRADED PLATES BASED ON HIGHER ORDER THEORY , 2002 .

[15]  Shaker A. Meguid,et al.  Nonlinear analysis of functionally graded plates and shallow shells , 2001 .

[16]  Shih-Jung Chiu,et al.  THERMOELASTIC BUCKLING OF LAMINATED COMPOSITE CONICAL SHELLS , 2001 .

[17]  K. M. Liew,et al.  Dynamic stability analysis of functionally graded cylindrical shells under periodic axial loading , 2001 .

[18]  J. N. Reddy,et al.  Vibration characteristics of functionally graded cylindrical shells under various boundary conditions , 2000, Applied Acoustics.

[19]  J. N. Reddy,et al.  Vibration of functionally graded cylindrical shells , 1999 .

[20]  R. Zimmerman,et al.  Thermal stresses and thermal expansion in a uniformly heated functionally graded cylinder , 1999 .

[21]  J. N. Reddy,et al.  Nonlinear transient thermoelastic analysis of functionally graded ceramic-metal plates , 1998 .

[22]  J. N. Reddy,et al.  THERMOMECHANICAL ANALYSIS OF FUNCTIONALLY GRADED CYLINDERS AND PLATES , 1998 .

[23]  S. Suresh,et al.  Fundamentals of functionally graded materials: processing and thermomechanical behaviour of graded metals and metal-ceramic composites , 1998 .

[24]  Y. Tanigawa,et al.  Optimization of Material Composition to Minimize Thermal Stresses in Nonhomogeneous Plate Subjected to Unsteady Heat Supply , 1997 .

[25]  M. Koizumi FGM activities in Japan , 1997 .

[26]  M. Inoue,et al.  THERMAL STRESS AND DEFORMATION IN FUNCTIONALLY GRADED MATERIAL SHELLS OF REVOLUTION UNDER THERMAL LOADING DUE TO FLUID , 1996 .

[27]  M. R. Eslami,et al.  THERMOELASTIC BUCKLING OF THIN CYLINDRICAL SHELLS BASED ON IMPROVED STABILITY EQUATIONS , 1996 .

[28]  N. Noda Thermal stresses in functionally graded materials , 1999 .

[29]  V. Birman Buckling of Functionally Graded Hybrid Composite Plates , 1995 .

[30]  P. K. Gotsis,et al.  Fiber composite thin shells subjected to thermal buckling loads , 1994 .

[31]  Earl A. Thornton,et al.  Thermal Buckling of Plates and Shells , 1993 .

[32]  Victor Birman,et al.  Buckling and Post-buckling of Composite Plates and Shells Subjected to Elevated Temperature , 1993 .

[33]  M. Koizumi THE CONCEPT OF FGM , 1993 .

[34]  T. R. Tauchert,et al.  Thermally Induced Flexure, Buckling, and Vibration of Plates , 1991 .

[35]  C. Bert,et al.  Dynamic stability of reinforced composite cylindrical shells in thermal fields , 1990 .

[36]  J. Tani BUCKLING OF TRUNCATED CONICAL SHELLS UNDER COMBINED PRESSURE AND HEATING , 1984 .

[37]  J. Tani Influence of axisymmetric initial deflections on the thermal buckling of truncated conical shells , 1978 .

[38]  J. Bertin,et al.  Experimental investigation of supersonic flow past double-wedge configurations , 1975 .

[39]  S. K. Radhamohan,et al.  Thermal Buckling of Orthotropic Cylindrical Shells , 1975 .

[40]  L. K. Chang,et al.  Nonlinear thermal elastic buckling of conical shells , 1968 .

[41]  L. K. Chang,et al.  Thermal buckling of conical shells. , 1967 .

[42]  J. Singer,et al.  Buckling of conical shells heated along a generator. , 1966 .

[43]  A. S. Vol'mir Stability of elastic systems , 1965 .