PDF Ebook Mechanical Behavior of Materials: Engineering Methods for Deformation, Fracture, and Fatigue (2nd Edition), by Norman E. Dowling
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Mechanical Behavior of Materials: Engineering Methods for Deformation, Fracture, and Fatigue (2nd Edition), by Norman E. Dowling
PDF Ebook Mechanical Behavior of Materials: Engineering Methods for Deformation, Fracture, and Fatigue (2nd Edition), by Norman E. Dowling
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Praised by readers for its usefulness, this book covers the entire area of mechanical behavior of materials from a practical engineering viewpoint, providing a single-source introductory analysis with specific coverage on materials testing, yield criteria, stress-based fatigue, fracture mechanics, crack growth, strain-based fatigue, and creep. Explains test methods and the principles behind them, and explores engineering methods for predicting strength and life, with real-date worked examples. Completely updates discussions on fracture mechanics, stress-based fatigue, and creep, and adds three new appendices; one that reviews useful topics from elementary mechanics of materials, one that considers statistical variation in materials properties, and a third that aids in locating materials property information in the tables found in various chapters. Updated end-of-chapter references lead to sources of materials data and to more detailed information. For the mechanical engineer, materials engineer, aeronautical engineer, structural engineer, design engineer, or test engineer.
- Sales Rank: #1094554 in Books
- Published on: 1998-09-02
- Original language: English
- Number of items: 1
- Dimensions: 9.25" h x 1.63" w x 7.00" l, 2.92 pounds
- Binding: Hardcover
- 830 pages
From the Publisher
An exploration of the engineering methods used in industry for analyzing and predicting the mechanical behavior of materials.
From the Back Cover
Praised by readers for its usefulness, this book covers the entire area of mechanical behavior of materials from a practical engineering viewpoint, providing a single-source introductory analysis with specific coverage on materials testing, yield criteria, stress-based fatigue, fracture mechanics, crack growth, strain-based fatigue, and creep. Explains test methods and the principles behind them, and explores engineering methods for predicting strength and life, with real-date worked examples. Completely updates discussions on fracture mechanics, stress-based fatigue, and creep, and adds three new appendices; one that reviews useful topics from elementary mechanics of materials, one that considers statistical variation in materials properties, and a third that aids in locating materials property information in the tables found in various chapters. Updated end-of-chapter references lead to sources of materials data and to more detailed information. For the mechanical engineer, materials engineer, aeronautical engineer, structural engineer, design engineer, or test engineer.
Most helpful customer reviews
14 of 14 people found the following review helpful.
The best of its kind
By A Customer
This is a very comprehensive and well-written book. Unlike other books that are overly theoretical, this book emphasizes practical methods that are currently being used to solve real-world problems. The treatment of uniaxial fatigue (both stress-based and strain-based) is superb. The chapters on failure theories and 3-D stress/strain are also excellent. Some readers like myself, however, may want a little more coverage of multiaxial fatigue. There is also no coverage at all on column stability. However, if you've found that your college texts on Machine Design and Mechanics of Materials are simply too idealized to be useful, you'll embrace this book with open arms.
2 of 2 people found the following review helpful.
Excellent example of what an engineering text should be!
By kelly londry
Professor Dowling has done a remarkable job in presenting his material. "Mechanical Behavior of Materials" is pedagogically solid, enabling comfortable self-study for engineering students or practicing engineers. The coverage of deformation, static failure, and fatigue failure analyses are comprehensive, and yet sufficiently detailed to be applied in practice. Individual chapters are devoted to each of the three major fatigue analysis techniques, i.e., stress, strain, and fracture mechanics methods. Each are clearly and thoroughly explained, along with their applications and limitations. Also covered are a host of standard testing procedures, material properties for all major classes, plasticity, creep, relaxation, and material damping (a rarity). Altogether, Professor Dowling's book stands out as an exceptional example of what an engineering text should be. It is a very fine successor to an earlier, and still worthwhile work called "Stress, Strain, and Strength" by the late Professor Robert Juvinall. Another useful book, is "Metal Fatigue in Engineering", by Fuchs and Stephens.
1 of 1 people found the following review helpful.
Good undergraduate text
By Heisenberg
This is a very good text for an undergraduate mechanics of materials class. Graduate students will probably want a book with a little more detail, like Deformation and Fracture Mechanics of Engineering Materials by Richard W. Hertzberg.
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