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"This textbook fits courses on mechanical behavior of materials in mechanical engineering and materials science and includes numerous examples and problems. It emphasizes quantitative problem solving. This text differs from others because the treatment of plasticity emphasizes the interrelationship of the flow, effective strain, and effective stress and their use in conjunction with yield criteria to solve problems. The treatment of defects is new, as is the analysis of particulate composites. Schmid's law is generalized for complex stress states. Its use with strains allows for prediction of R-values for textures. Of note is the treatment of lattice rotations related to deformation textures. The chapter on fracture mechanics includes coverage of Gurney's approach. Among the highlights in this new edition are the treatment of the effects of texture on properties and microstructure in Chapter 7, a new chapter (12) on discontinuous and inhomogeneous deformation, and the treatment of foams in Chapter 21"--Provided by publisher.
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Previews available in: English
Edition | Availability |
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1
Mechanical behavior of materials
2010, Cambridge University Press
in English
- 2nd ed.
0521195691 9780521195690
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2
Mechanical behavior of materials
2010, Cambridge University Press
in English
- 2nd ed.
0521195691 9780521195690
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3
Mechanical Behavior of Materials
2005, Cambridge University Press
E-book
in English
0511114109 9780511114106
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4
Mechanical Behavior of Materials
May 2, 2005, Cambridge University Press
Hardcover
in English
0521846706 9780521846707
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Book Details
Edition Notes
Includes bibliographical references and index.
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Work Description
This textbook is for courses on Mechanical Behavior of Materials taught in departments of Mechanical Engineering and Materials Science. The text includes numerous examples and problems for student practice. The book emphasizes quantitative problem solving. End of the chapter notes are included to increase students' interest. This text differs from others because the treatment of plasticity has greater emphasis on the interrelationship of the flow, effective strain and effective stress and their use in conjunction with yield criteria to solve problems. The treatment of defects is new. Schmid's law is generalized for complex stress states. Its use with strains allows for prediction of R-values for textures. Another feature is the treatment of lattice rotations and how they lead to deformation textures. The chapter on fracture mechanics includes coverage of Gurney's approach. Much of the analysis of particulate composites is new. Few texts include anything on metal forming.
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