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1. Transducers and Data Acquisition / Richard B. Hathaway, Kah Wah Long -- 2. Fatigue Damage Theories / Yung-Li Lee -- 3. Cycle Counting Techniques / Yung-Li Lee, Darryl Taylor -- 4. Stress-Based Fatigue Analysis and Design / Yung-Li Lee, Darryl Taylor -- 5. Strain-Based Fatigue Analysis and Design / Yung-Li Lee, Darryl Taylor -- 6. Fracture Mechanics and Fatigue Crack Propagation / Jwo Pan, Shih-Huang Lin -- 7. Fatigue of Spot Welds / Mark E. Barkey, Shicheng Zhang -- 8. Development of Accelerated Life Test Criteria / Yung-Li Lee, Mark E. Barkey -- 9. Reliability Demonstration Testing / Ming-Wei Lu -- 10. Fatigue Analysis in the Frequency Domain / Yung-Li Lee.
Modern Solid Mechanics considers phenomena at many levels, ranging from nano size at atomic scale through the continuum level at millimeter size to large structures at the tens of meter scale. The deformation and fracture behavior at these various scales are inextricably related to interdisciplinary methods derived from applied mathematics, physics, chemistry, and engineering mechanics. This book, in honor of James R. Rice, contains articles from his colleagues and former students that bring these sophisticated methods to bear on a wide range of problems. Articles discussing problems of deformation include topics of dislocation mechanics, second particle effects, plastic yield criterion on p...
Each number is the catalogue of a specific school or college of the University.
The evolution and execution of automotive manufacturing are explored in this fundamental manual. It is an excellent reference for entry level manufacturing engineers and also serves as a training guide for nonmanufacturing professionals. The book covers the major areas of vehicle assembly manufacturing and addresses common approaches and procedures of the development process. Having held positions as both a University Professor and as a Lead Engineering Specialist in industry, the author draws on his experience in both theory and application to fill the gap between academic research and industrial practices. This concisely written, comprehensive review discusses the sophisticated principles ...
Understand why fatigue happens and how to model, simulate, design and test for it with this practical, industry-focused reference Written to bridge the technology gap between academia and industry, the Metal Fatigue Analysis Handbook presents state-of-the-art fatigue theories and technologies alongside more commonly used practices, with working examples included to provide an informative, practical, complete toolkit of fatigue analysis. Prepared by an expert team with extensive industrial, research and professorial experience, the book will help you to understand: - Critical factors that cause and affect fatigue in the materials and structures relating to your work - Load and stress analysis...
This is a textbook for courses in civil and mechanical engineering that are commonly called Strength of Materials or Mechanics of Materials. The intent of this book is to provide a background in the mechanics of solids for students of mechanical engineering, while limiting the information on why materials behave as they do. It is assumed that the students have already had courses covering materials science and basic statics. Much of the material is drawn from another book by the author, Mechanical Behavior of Materials. To make the text suitable for mechanical engineers, the chapters on slip, dislocations, twinning, residual stresses, and hardening mechanisms have been eliminated and the treatment of ductility viscoelasticity, creep, ceramics, and polymers has been simplified.
Selected, peer reviewed papers from the 11th International Fatigue Congress 2014, March 2-7, 2014, Melbourne, Australia
Selected, peer reviewed papers from the 2013 2nd International Conference on Frontiers of Mechanical Engineering and Materials Engineering (MEME 2013), October 12-13, 2013, Hongkong