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El. knyga: Functionally Graded Materials: Nonlinear Analysis of Plates and Shells

  • Formatas: 280 pages
  • Išleidimo metai: 19-Apr-2016
  • Leidėjas: CRC Press Inc
  • Kalba: eng
  • ISBN-13: 9781420092578
Kitos knygos pagal šią temą:
  • Formatas: 280 pages
  • Išleidimo metai: 19-Apr-2016
  • Leidėjas: CRC Press Inc
  • Kalba: eng
  • ISBN-13: 9781420092578
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Put a New Class of Structural Composites to Use





Real Solutions for Predicting Load





Initially designed as thermal barrier materials for aerospace applications and fusion reactors, functionally graded materials (FGMs) are now widely employed as structural components in extremely high-temperature environments. However, little information is commonly available that would allow engineers to predict the response of FGM plates and shells subjected to thermal and mechanical loads.





Functionally Graded Materials: Nonlinear Analysis of Plates and Shells is the first book devoted to the geometrically nonlinear response of inhomogeneous isotropic and functionally graded plates and shells. Concerned that the high loads common to many structures may result in nonlinear loaddeflection relationships due to large deformations, author Hui-Shen Shen has been conducting investigations since 2001, paying particular attention to the nonlinear response of these plates and shells to nonlinear bending, postbuckling and nonlinear vibration.





Nearly all the solutions presented are the results of investigations conducted by the author and his collaborators. The rigor of these investigative procedures allows the results presented within these pages to stand as a benchmark against which the validity and accuracy of other numerical solutions may be measured
Preface vii
Author ix
Modeling of Functionally Graded Materials and Structures
1(20)
Introduction
1(2)
Effective Material Properties of FGMs
3(6)
Reddy's Higher Order Shear Deformation Plate Theory
9(5)
Generalized Karman-Type Nonlinear Equations
14(7)
References
17(4)
Nonlinear Bending of Shear Deformable FGM Plates
21(24)
Introduction
21(1)
Nonlinear Bending of FGM Plates under Mechanical Loads in Thermal Environments
22(14)
Nonlinear Thermal Bending of FGM Plates due to Heat Conduction
36(9)
References
42(3)
Postbuckling of Shear Deformable FGM Plates
45(54)
Introduction
45(2)
Postbuckling of FGM Plates with Piezoelectric Actuators under Thermoelectromechanical Loads
47(19)
Thermal Postbuckling Behavior of FGM Plates with Piezoelectric Actuators
66(16)
Postbuckling of Sandwich Plates with FGM Face Sheets in Thermal Environments
82(17)
References
96(3)
Nonlinear Vibration of Shear Deformable FGM Plates
99(48)
Introduction
99(1)
Nonlinear Vibration of FGM Plates in Thermal Environments
100(18)
Free Vibration
108(1)
Forced Vibration
108(10)
Nonlinear Vibration of FGM Plates with Piezoelectric Actuators in Thermal Environments
118(14)
Vibration of Postbuckled Sandwich Plates with FGM Face Sheets in Thermal Environments
132(15)
References
143(4)
Postbuckling of Shear Deformable FGM Shells
147(64)
Introduction
147(2)
Boundary Layer Theory for the Buckling of FGM Cylindrical Shells
149(4)
Donnell Theory
149(1)
Generalized Karman-Donnell-Type Nonlinear Equations
150(2)
Boundary Layer-Type Equations
152(1)
Postbuckling Behavior of FGM Cylindrical Shells under Axial Compression
153(16)
Postbuckling Behavior of FGM Cylindrical Shells under External Pressure
169(14)
Postbuckling Behavior of FGM Cylindrical Shells under Torsion
183(16)
Thermal Postbuckling Behavior of FGM Cylindrical Shells
199(12)
References
208(3)
Appendix A 211(2)
Appendix B 213(2)
Appendix C 215(6)
Appendix D 221(4)
Appendix E 225(2)
Appendix F 227(2)
Appendix G 229(2)
Appendix H 231(2)
Appendix I 233(2)
Appendix J 235(4)
Appendix K 239(2)
Appendix L 241(4)
Appendix M 245(2)
Appendix N 247(10)
Appendix O 257(2)
Index 259
Shen, Hui-Shen