Produktbild: Theory of Elasticity and Stress Concentration

Theory of Elasticity and Stress Concentration

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Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

25.11.2016

Verlag

John Wiley & Sons

Seitenzahl

480

Maße (L/B/H)

25,2/17,9/3 cm

Gewicht

852 g

Auflage

1. Auflage

Sprache

Englisch

ISBN

978-1-119-27409-4

Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

25.11.2016

Verlag

John Wiley & Sons

Seitenzahl

480

Maße (L/B/H)

25,2/17,9/3 cm

Gewicht

852 g

Auflage

1. Auflage

Sprache

Englisch

ISBN

978-1-119-27409-4

Herstelleradresse

Libri GmbH
Europaallee 1
36244 Bad Hersfeld
DE

Email: gpsr@libri.de

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Die Leseprobe wird geladen.
  • Produktbild: Theory of Elasticity and Stress Concentration
  • Part I

    Preface for the book
    Preface for the part

    Chapter 1 Stress
    1.1 Stress at the surface of a body
    1.2 Stress in the interior of a body
    1.3 Two-dimensional (2D) stress state, three-dimensional (3D) stress state and stress transformation

    Chapter 2 Strains
    2.1 Strains in two-dimensional problems
    2.2 Strains in three-dimensional problems
    2.3 Strains in an arbitrary direction
    2.4 Principal strains
    2.5 Conditions of compatibility

    Chapter 3 The Relationship between Stresses and Strains: The Generalized Hooke's law

    Chapter 4 Equilibrium Equations

    Chapter 5 Saint Venant's Principle and Boundary Conditions
    5.1 Saint Venant's Principle
    5.2 Boundary conditions

    Chapter 6 Two-Dimensional Problems
    6.1 Plane stress and plane strain
    6.2 Basic conditions for exact solutions: Nature of solutions
    6.3 Airy's stress function
    6.4 Hollow cylinder
    6.5 Stress concentration at a circular hole
    6.6 Stress concentration at an elliptical hole
    6.7 Stress concentration at a hole in a finite width plate
    6.8 Stress concentration at a crack
    6.9 Stress field due to a point force applied at the edge of a semi-infinite plate
    6.10 Circular disk subjected to a concentrated force

    Chapter 7 Torsion of a Bar with Uniform Section
    7.1 Torsion of cylindrical bars
    7.2 Torsion of bars having thin closed section
    7.3 Saint Venant's torsion problems
    7.4 Stress function in torsion
    7.5 Membrane analogy: Solution of torsion problems by using the deformation of pressurized membrane
    7.6 Torsion of bars having thin unclosed section
    7.7 Comparison of torsional rigidity between a bar with an open section and a bar with a closed section

    Chapter 8 Energy Principles
    8.1 Strain energy
    8.2 Uniqueness of the solutions of elasticity problems
    8.3 Principle of the virtual work
    8.4 Principle of the minimum potential energy
    8.5 Castigliano's theorem
    8.6 The reciprocal theorem

    Chapter 9 The Finite Element Method, FEM
    9.1 FEM for one-dimensional problems
    9.2 Analysis of plane stress problems by the finite element method

    Chapter 10 Bending of Plates
    10.1 Simple examples of plate bending
    10.2 General problems of plate bending
    10.3 Transformation of bending moment and torsional moment
    10.4 Differential equations for a plate subjected to loads on the surface and their applications
    10.5 Boundary conditions in plate bending problems
    10.6 Polar coordinate expression of the quantities of plate bending
    10.7 Stress concentration in plate bending problems
    10.8 Bending of a circular plate

    Chapter 11 Deformation and Stress in Cylindrical Shells
    11.1 Basic equations
    11.2 Various problems of cylindrical shells

    Chapter 12 Thermal Stress
    12.1 Thermal stress in a rectangular plate - Simple examples of thermal stress
    12.2 Thermal stress in a circular plate
    12.3 Thermal stress in a cylinder

    Chapter 13 Contact Stress
    13.1 Two-dimensional contact stress
    13.2 Three-dimensional contact stress
    Problems of Chapter 13

    Appendix
    Appendix 1 Rule of direction cosines
    Appendix 2 Green's theorem and Gauss' divergence theorem

    Answers and Hints for the Problems