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Elasticity : theory, applications, and numerics / Martin H. Sadd, Professor, University of Rhode Island Department of Mechanical Engineering and Applied Mechanics, Kingston, Rhode Island.

Por: Tipo de material: TextoTextoEditor: Amsterdam ; Boston : Elsevier/Academic Press, [2014]Edición: 3rd edDescripción: xvii, 582 páginas : ilustracionesTipo de contenido:
  • texto
Tipo de medio:
  • no mediado
Tipo de soporte:
  • volumen
ISBN:
  • 0124081363
  • 9780124081369
Tema(s): Clasificación CDD:
  • 531.382 S124e 2014
Contenidos:
1. Mathematical preliminaries -- 2. Deformation : displacements and strains -- 3. Stress and equilibrium -- 4. Material behavior : linear elastic solids -- 5. Formulation and solution strategies -- 6. Strain energy and related principles -- 7. Two-dimensional formulation -- 8. Two-dimensional problem solution -- 9. Extension, torsion, and flexure of elastic cylinders -- 10. Complex variable methods -- 11. Anisotropic elasticity -- 12. Thermoelasticity -- 13. Displacement potentials and stress functions: applications to three dimensional problems -- 14. Nonhomogeneous elasticity -- 15. Micromechanics applications -- 16. Numerical finite and boundary element methods -- App. A. Basic field equations in Cartesian, cylindrical and spherical coordinates -- App. B. Transformation of field variables between Cartesian, cylindrical, and spherical components -- App. C. MATLAB primer -- App. D. Review of Mechanics of Materials.
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1. Mathematical preliminaries -- 2. Deformation : displacements and strains -- 3. Stress and equilibrium -- 4. Material behavior : linear elastic solids -- 5. Formulation and solution strategies -- 6. Strain energy and related principles -- 7. Two-dimensional formulation -- 8. Two-dimensional problem solution -- 9. Extension, torsion, and flexure of elastic cylinders -- 10. Complex variable methods -- 11. Anisotropic elasticity -- 12. Thermoelasticity -- 13. Displacement potentials and stress functions: applications to three dimensional problems -- 14. Nonhomogeneous elasticity -- 15. Micromechanics applications -- 16. Numerical finite and boundary element methods -- App. A. Basic field equations in Cartesian, cylindrical and spherical coordinates -- App. B. Transformation of field variables between Cartesian, cylindrical, and spherical components -- App. C. MATLAB primer -- App. D. Review of Mechanics of Materials.

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