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9781402040337

Elasticity of Transversely Isotropic Materials

by ; ;
  • ISBN13:

    9781402040337

  • ISBN10:

    1402040334

  • Format: Hardcover
  • Copyright: 2006-04-15
  • Publisher: Kluwer Academic Pub
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Supplemental Materials

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Summary

This book presents a comprehensive and systematic analysis of problems of transversely isotropic materials that have wide applications in civil, mechanical, aerospace, materials processing and manufacturing engineering. Various efficient methods based on three-dimensional elasticity are developed under a unified framework, including the displacement method, the stress method, and the state-space method. In particular, a three-dimensional general solution is derived to solve practical problems such as the infinite space, half-space, bimaterial space, layered medium, bodies of revolution, thermal stresses and three-dimensional contact. Exact and analytical solutions are also derived for static and dynamic problems of plates and shells, which may be used as the benchmarks for numerical or approximate analysis. Coupling effects of inner/outer fluids and surrounding elastic media on the free vibration cylindrical and spherical shells are discussed in detail. New state-space formulations are established for the analysis of rectangular plates and spherical shells, from which two independent classes of vibrations can be easily clarified.In short, this is the first monograph on mechanics of transversely isotropic materials, which is unique, covers topics of practical importance and provides many references for the reader.

Table of Contents

Preface xi
Basic Equations of Anisotropic Elasticity
1(28)
Transformation of Strains and Stresses
1(3)
Basic Equations
4(19)
Geometric equations
4(3)
Equations of motion
7(1)
Constitutive equations
8(15)
Boundary and Initial Conditions
23(2)
Boundary conditions
23(1)
Initial conditions
24(1)
Thermoelasticity
25(4)
General Solution for Transversely Isotropic Problems
29(42)
Governing Equations
29(9)
Methods of solution
29(1)
Governing equations for the displacement method
30(3)
Equations for a mixed method -- the state-space method
33(5)
Displacement Method
38(16)
General solution in Cartesian coordinates
38(13)
General solution in cylindrical coordinates
51(3)
Stress Method for Axisymmetric Problems
54(8)
Displacement Method for Spherically Isotropic Bodies
62(9)
General solution
62(5)
Relationship between transversely isotropic and spherically isotropic solutions
67(4)
Problems for Infinite Solids
71(36)
The Unified Point Force Solution
71(8)
A point force perpendicular to the isotropic plane
71(4)
A point force within the isotropic plane
75(4)
The Point Force Solution for an Infinite Solid Composed of two Half-Spaces
79(14)
A point force perpendicular to the isotropic plane
80(5)
A point force within the isotropic plane
85(8)
Some remarks
93(1)
An Infinite Transversely Isotropic Space with an Inclusion
93(6)
Spherically Isotropic Materials
99(8)
An infinite space subjected to a point force
99(2)
Stress concentration near a spherical cavity
101(6)
Half-Space and Layered Media
107(40)
Unified Solution for a Half-Space Subjected to a Surface Point Force
107(11)
A point force normal to the half-space surface
108(4)
A point force tangential to the half-space surface
112(6)
A Half-Space Subjected to an Interior Point Force
118(5)
A point force normal to the half-space surface
119(2)
A point force tangential to the half-space surface
121(2)
General Solution by Fourier Transform
123(10)
Point Force Solution of an Elastic Layer
133(8)
Layered Elastic Media
141(6)
Equilibrium of Bodies of Revolution
147(36)
Some Harmonic Functions
147(1)
Harmonic polynomials
147(1)
Harmonic functions containing In(r / r1)
147(1)
Harmonic functions containing R
148(1)
An Annular (Circular) Plate Subjected to Axial Tension and Radial Compression
148(2)
An Annular (Circular) Plate Subjected to Pure Bending
150(2)
A Simply-Supported Annular (Circular) Plate Under Uniform Transverse Loading
152(2)
A Uniformly Rotating Annular (Circular) Plate
154(4)
Transversely Isotropic Cones
158(7)
Compression of a cone under an axial force
158(4)
Bending of a cone under a transverse force
162(3)
Spherically Isotropic Cones
165(18)
Equilibrium and boundary conditions
165(3)
A cone under tip forces
168(5)
A cone under concentrated moments at its apex
173(3)
Conical shells
176(7)
Thermal Stresses
183(22)
Transversely Isotropic Materials
183(6)
A Different General Solution for Transversely Isotropic Thermoelasticity
189(10)
General solution for dynamic problems
189(3)
General solution for static problems
192(7)
Spherically Isotropic Materials
199(6)
Frictional Contact
205(42)
Two Elastic Bodies in Contact
205(12)
Mathematical description of a contact system
205(3)
Deformation of transversely isotropic bodies under frictionless contact
208(6)
A half-space under point forces
214(3)
Contact of a Sphere with a Half-Space
217(7)
Contact with normal loading
217(5)
Contact with tangential loading
222(2)
Contact of a Cylindrical Punch with a Half-Space
224(6)
Contact with normal loading
225(3)
Contact with tangential loading
228(2)
Indentation by a Cone
230(6)
Contact with normal loading
231(2)
Contact with tangential loading
233(3)
Inclined Contact of a Cylindrical Punch with a Half-Space
236(5)
Contact with normal loading
237(1)
Contact with tangential loading
238(3)
Discussions on Solutions for Frictional Contact
241(6)
Bending, Vibration and Stability of Plates
247(36)
General Solution Method
247(19)
Rectangular plates
247(10)
Circular plates
257(9)
The State-Space Method for Laminated Plates
266(17)
Laminated rectangular plates
266(9)
Laminated circular plates
275(8)
Vibrations of Cylinders and Cylindrical Shells of Transversely Isotropic Materials
283(44)
Three Simple Modes of Vibration
283(18)
Axisymmetric torsional vibration
285(7)
Breathing mode vibration
292(4)
Thickness-shear vibration
296(5)
Asymmetric Vibration
301(9)
Vibration of a Layered Cylindrical Shell
310(6)
State-space formulations
310(3)
Layerwise method and state vector solution
313(1)
Free vibration analysis and numerical results
314(2)
Vibration of a Cylindrical Shell Coupled with Fluid
316(5)
Coupling effect of fluid
316(2)
Free vibration of submerged and/or fluid-filled cylinders and cylindrical shells
318(1)
Numerical results of a fluid-filled cylindrical shell
319(2)
Vibration of a Cylindrical Shell Coupled with the Surrounding Elastic Medium
321(6)
Elastic waves in an isotropic elastic medium
321(3)
Displacements and stresses in the shell
324(1)
Vibration of the shell
325(2)
Spherical Shells of -- Spherically Isotropic Materials
327(46)
Free Vibration
327(7)
Basic equations and solution
327(4)
Free vibration analysis
331(3)
Frequency Equations and Numerical Results
334(11)
Frequency equations of a single-layered hollow sphere
334(2)
Some special cases
336(2)
An example
338(7)
Vibration Coupled with Fluid
345(11)
Effect of fluid
345(3)
Frequency equations
348(2)
Numerical results
350(6)
Vibration Coupled with the Surrounding Elastic Medium
356(8)
Pasternak model of elastic foundation
357(3)
Frequency equations
360(1)
Numerical results
361(3)
Laminated Spherical Shells
364(9)
State-space formulations for spherically isotropic elasticity
364(3)
Layerwise method and state vector solution
367(2)
Frequency equations
369(2)
Numerical results
371(2)
Appendix A Additional Notes and Bibliography to Chapters 373(14)
Appendix B Special Functions 387(10)
Appendix C Nomenclature 397(8)
References 405(26)
Index 431

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