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Section I Fundamentals
Chapter 1 Introduction
Chapter 2 Materials
Chapter 3 Stress and Strain
Chapter 4 Deflection and Impact
Chapter 5 Energy Methods and Stability
Section II Failure Prevention
Chapter 6 Static Failure Criteria and Reliability
Chapter 7 Fatigue Failure Criteria
Chapter 8 Surface Failure
Section III Machine Component Design
Chapter 9 Shafts and Associated Parts
Chapter 10 Bearings and Lubrication
Chapter 11 Spur Gears
Chapter 12 Helical, Bevel, and Worm Gears
Chapter 13 Belts, Chains, Clutches, and Brakes
Chapter 14 Springs
Chapter 15 Power Screws, Fasteners, and Connections
Chapter 16 Miscellaneous Mechanical Components
Chapter 17 Finite Element Analysis in Design
Chapter 18 Case Studies in Machine Design
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Mechanical Engineering Design, Third Edition strikes a balance between theory and application, and prepares students for more advanced study or professional practice. Updated throughout, it outlines basic concepts and provides the necessary theory to gain insight into mechanics with numerical methods in design. Divided into three sections, the text presents background topics, addresses failure prevention across a variety of machine elements, and covers the design of machine components as well as entire machines. Optional sections treating special and advanced topics are also included.
Features:
-Places a strong emphasis on the fundamentals of mechanics of materials as they relate to the study of mechanical design
-Furnishes material selection charts and tables as an aid for specific uses
-Includes numerous practical case studies of various components and machines
-Covers applied finite element analysis in design, offering this useful tool for computer-oriented examples
-Addresses the ABET design criteria in a systematic manner
-Presents independent chapters that can be studied in any order
-Introduces optional MATLAB? solutions tied to the book and student learning resources
Mechanical Engineering Design, Third Edition allows students to gain a grasp of the fundamentals of machine design and the ability to apply these fundamentals to various new engineering problems.
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