Fundamentals of Machine Component Design
eBook - ePub

Fundamentals of Machine Component Design

  1. 550 pages
  2. English
  3. ePUB (mobile friendly)
  4. Available on iOS & Android
eBook - ePub

Fundamentals of Machine Component Design

About this book

Fundamentals of Machine Component Design bridges theory and practice to provide readers with a thorough understanding of best practices for machine component design and application. Load and stress analysis, fatigue, fracture, and other mechanical behaviors that can result in the failure of a machine component are discussed in the early chapters, before the book moves onto to cover different connections (welded and bolted) prevalent in machine components, and then individual components such as gears, shafts, bearings, springs, pressure vessels, brakes, clutches, keys and couplings, and more. The book ends with chapters outlining different design methods as well as design problems for readers to practice with, the solutions to which are also provided. - Covers the design of shafts, power screws, bolts, welded connections, springs, and pressure vessels, as well as transmitted power elements such as belts, chains, gears, and wire ropes - Outlines finite element methods and other techniques that can be used for effectively designing machine components - Discusses contact and sliding bearings, keys and couplings, gears (helical, spur, bevel, and worm), and more - Includes solved problems to help readers refine their skills

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Yes, you can access Fundamentals of Machine Component Design by Wael A. Altabey in PDF and/or ePUB format, as well as other popular books in Technology & Engineering & Materials Science. We have over one million books available in our catalogue for you to explore.

Table of contents

  1. Fundamentals of Machine Component Design
  2. Cover
  3. Title Page
  4. Copyright
  5. Contents
  6. About the author
  7. Preface
  8. Acknowledgments
  9. Chapter 1 Introduction
  10. Chapter 2 Load and stress analysis
  11. Chapter 3 Theories of failure
  12. Chapter 4 Fatigue failure resulting from variable loading
  13. Chapter 5 Deflection and stiffness
  14. Chapter 6 Bolted connections
  15. Chapter 7 Welded connections
  16. Chapter 8 Mechanical power screw
  17. Chapter 9 Belt and chain drives
  18. Chapter 10 Wire rope
  19. Chapter 11 Gears
  20. Chapter 12 Shafts
  21. Chapter 13 Contact bearings
  22. Chapter 14 Sliding bearings
  23. Chapter 15 Mechanical springs
  24. Chapter 16 Pressure vessels
  25. Chapter 17 Clutches
  26. Chapter 18 Brakes
  27. Chapter 19 Keys and couplings
  28. Chapter 20 Design by numerical method
  29. Chapter 21 The optimum design methods
  30. Appendix Complete design problems
  31. Index