Analysis and Design of Machine Elements

Book description

Incorporating Chinese, European, and International standards and units of measurement, this book presents a classic subject in an up-to-date manner with a strong emphasis on failure analysis and prevention-based machine element design. It presents concepts, principles, data, analyses, procedures, and decision-making techniques necessary to design safe, efficient, and workable machine elements. Design-centric and focused, the book will help students develop the ability to conceptualize designs from written requirements and to translate these design concepts into models and detailed manufacturing drawings.

  • Presents a consistent approach to the design of different machine elements from failure analysis through strength analysis and structural design, which facilitates students’ understanding, learning, and integration of analysis with design
  • Fundamental theoretical topics such as mechanics, friction, wear and lubrication, and fluid mechanics are embedded in each chapter to illustrate design in practice
  • Includes examples, exercises, review questions, design and practice problems, and CAD examples in each self-contained chapter to enhance learning 

Analysis and Design of Machine Elements is a design-centric textbook for advanced undergraduates majoring in Mechanical Engineering. Advanced students and engineers specializing in product design, vehicle engineering, power machinery, and engineering will also find it a useful reference and practical guide.

Table of contents

  1. Cover
  2. Preface
  3. About the Companion Website
  4. Part I: Fundamentals of Design and Strength Analysis
    1. 1 An Overview of Machine Design
      1. 1.1 Introduction
      2. 1.2 Machine Design
      3. 1.3 Machine Element Design
      4. 1.4 Materials and Their Properties
      5. 1.5 Unit Systems
      6. 1.6 Standards and Codes
      7. References
      8. Problems
    2. 2 Strength of Machine Elements
      1. 2.1 Fluctuating Loads and Stresses
      2. 2.2 Static Strength
      3. 2.3 Fatigue Strength
      4. 2.4 Contact Strength
      5. References
      6. Problems
  5. Part II: Design Applications
    1. 3 Detachable Joints and Fastening Methods
      1. 3.1 Introduction
      2. 3.2 Screw Threads
      3. 3.3 Threaded Fastening Methods
      4. 3.4 Force Analysis of Multiply Bolted Joints
      5. 3.5 Strength Analysis
      6. 3.6 Design of Bolted Joints
      7. References
      8. Problems
    2. 4 Detachable Fastenings for Shaft and Hub
      1. 4.1 Keys
      2. 4.2 Splines
      3. 4.3 Pins
      4. References
      5. Problems
    3. 5 Permanent Connections
      1. 5.1 Riveting
      2. 5.2 Welding
      3. 5.3 Brazing, Soldering and Adhesive Bonding
      4. References
      5. Problems
    4. 6 Belt Drives
      1. 6.1 Introduction
      2. 6.2 Working Condition Analysis
      3. 6.3 Power Transmission Capacities
      4. 6.4 Design of Belt Drives
      5. 6.5 Installation and Maintenance
      6. References
      7. Problems
    5. 7 Chain Drives
      1. 7.1 Introduction
      2. 7.2 Working Condition Analysis
      3. 7.3 Power Transmission Capacities
      4. 7.4 Design of Chain Drives
      5. 7.5 Drive Layout, Tension and Lubrication
      6. References
      7. Problems
    6. 8 Gear Drives
      1. 8.1 Introduction
      2. 8.2 Working Condition Analysis
      3. 8.3 Strength Analysis for Spur Gears
      4. 8.4 Strength Analysis for Helical Gears
      5. 8.5 Strength Analysis for Bevel Gears
      6. 8.6 Design of Gear Drives
      7. 8.7 Structural Design of Gears
      8. 8.8 Lubrication and Efficiency
      9. References
      10. Problems
    7. 9 Wormgear Drives
      1. 9.1 Introduction
      2. 9.2 Working Condition Analysis
      3. 9.3 Load Carrying Capacities
      4. 9.4 Design of Wormgear Drives
      5. 9.5 Structural Design of Wormgear Drives
      6. 9.6 Lubrication of Wormgear Drives
      7. References
      8. Problems
    8. 10 Shafts
      1. 10.1 Introduction
      2. 10.2 Working Condition Analysis
      3. 10.3 Load Carrying Capacities
      4. 10.4 Design of Shafts
      5. References
      6. Problems
    9. 11 Rolling Contact Bearings
      1. 11.1 Introduction
      2. 11.2 Working Condition Analysis
      3. 11.3 Life Expectancy and Load Carrying Capacities
      4. 11.4 Design of Bearing Support Systems
      5. References
      6. Problems
    10. 12 Sliding Bearings
      1. 12.1 Introduction
      2. 12.2 Working Condition Analysis
      3. 12.3 Load Carrying Capacities
      4. 12.4 Design of Sliding Bearings
      5. References
      6. Problems
    11. 13 Couplings and Clutches
      1. 13.1 Introduction to Couplings
      2. 13.2 Design and Selection of Couplings
      3. 13.3 Introduction to Clutches
      4. References
      5. Problems
    12. 14 Springs
      1. 14.1 Introduction
      2. 14.2 Working Condition Analysis
      3. 14.3 Load Carrying Capacities
      4. 14.4 Design of Springs
      5. References
      6. Problems
  6. Index
  7. End User License Agreement

Product information

  • Title: Analysis and Design of Machine Elements
  • Author(s): Wei Jiang
  • Release date: April 2019
  • Publisher(s): Wiley
  • ISBN: 9781119276074