Practical Stress Analysis in Engineering Design
eBook - PDF

Practical Stress Analysis in Engineering Design

  1. 664 pages
  2. English
  3. PDF
  4. Available on iOS & Android
eBook - PDF

Practical Stress Analysis in Engineering Design

About this book

Updated and revised, this book presents the application of engineering design and analysis based on the approach of understanding the physical characteristics of a given problem and then modeling the important aspects of the physical system. This third edition provides coverage of new topics including contact stress analysis, singularity functions,

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Yes, you can access Practical Stress Analysis in Engineering Design by Ronald Huston,Harold Josephs in PDF and/or ePUB format, as well as other popular books in Physical Sciences & Mechanics. We have over one million books available in our catalogue for you to explore.

Information

Publisher
CRC Press
Year
2008
Print ISBN
9781574447132
eBook ISBN
9781420017823
Edition
3
Subtopic
Mechanics

Table of contents

  1. Front cover
  2. Contents
  3. Preface
  4. Authors
  5. Part I: Fundamental Relations and Concepts
  6. Chapter 1. Forces and Force Systems
  7. Chapter 2. Simple Stress and Strain: Simple Shear Stress and Strain
  8. Chapter 3. Hooke’s Law and Material Strength
  9. Chapter 4. Stress in Two and Three Dimensions
  10. Chapter 5. Strain in Two and Three Dimensions
  11. Chapter 6. Curvilinear Coordinates
  12. Chapter 7. Hooke’s Law in Two and Three Dimensions
  13. Part II: Straight and Long Structural Components: Beams, Rods, and Bars
  14. Chapter 8. Beams: Bending Stresses (Flexure)
  15. Chapter 9. Beams: Displacement from Bending
  16. Chapter 10. Beam Analysis Using Singularity Functions
  17. Chapter 11. Beam Bending Formulas for Common Configurations
  18. Chapter 12. Torsion and Twisting of Rods
  19. Part III: Special Beam Geomentries: Thick Beams, Curved Beams, Stability, and Shear Center
  20. Chapter 13. Thick Beams: Shear Stress in Beams
  21. Chapter 14. Curved Beams
  22. Chapter 15. Stability: Buckling of Beams, Rods, Columns, and Panels
  23. Chapter 16. Shear Center
  24. Part IV: Plates, Panels, Flanges, and Brackets
  25. Chapter 17. Plates: Bending Theory
  26. Chapter 18. Plates: Fundamental Bending Configurations and Applications
  27. Chapter 19. Panels and Annular Plate Closures
  28. Chapter 20. Flanges
  29. Chapter 21. Brackets
  30. Chapter 22. Special Plate Problems and Applications
  31. PART V: Dynamics Loadings, Fatigue, and Fracture
  32. Chapter 23. Dynamic Behavior of Structures: A Conceptual Review
  33. Chapter 24. Elements of Seismic Design
  34. Chapter 25. Impact Stress Propagation
  35. Chapter 26. Fatigue
  36. Chapter 27. Fracture Mechanics: Design Considerations
  37. Chapter 28. Fracture Control
  38. Part VI: Piping and Pressure Vessels
  39. Chapter 29. Vessels with Internal Pressure
  40. Chapter 30. Externally Pressured Cylindrical Vessels and Structures
  41. Chapter 31. Buckling of Spherical Shells
  42. Chapter 32. Axial and Bending Response
  43. Part VII: Advanced and Specialized Problems
  44. Chapter 33. Special Cylinder Problems
  45. Chapter 34. Stress Concentration
  46. Chapter 35. Thermal Considerations
  47. Chapter 36. Axial Response of Straight and Tapered Bars
  48. Chapter 37. Thin Rings and Arches
  49. Chapter 38. Links and Eyebars
  50. Chapter 39. Springs
  51. Chapter 40. Irregular Shape Springs
  52. Index
  53. Back cover