Mechanical metallurgy (McGraw-Hill series in materials science and engineering){repost}
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Mechanical metallurgy (McGraw-Hill series in materials science and engineering) by George Ellwood Dieter
Publisher:McGraw-Hill | 751 pages | 1988 | ISBN-007084187X | PDF | 51.1 MB
Metallurgy is one of the oldest established branches of materials science, and science in general. Yet many of the underlying principles, such as dislocation theory and plasticity, have only been explored within the last 100 years or so. As such, there is a wealth of information in metallurgy that one could learn. This book by G. Dieter is one of the better books to use to learn about metallurgy. Coming in at 800 pages even, this book is a thorough study of the principles behind mechanical metallurgy and is appropriate for both students in the field and practicing engineers. The book provides complete mathematical treatments of numerous subjects within mechanical metallurgy, including crystallography of defects, thermodynamics of plastic flow, kinetics, etc... The book is somewhat old-fashioned in that it leaves out more modern topics such as the use of computer simulations in metallurgy. Because of this, the book does not deserve 5 stars. But due to its breadth and coverage of other topics, it deserves 4 out of 5 stars.This revised third edition of a bestselling metallurgy text examines the behaviour of materials under stress and their reaction to a variety of hostile environments. It covers the entire scope of mechanical metallurgy, from an understanding of the continuum description of stress and strain, through crystalline and defect mechanisms of flow and fracture, and on to a consideration of major mechanical property tests and the basic metalworking process. It has been updated throughout, SI units have been added, and end-of-chapter study questions are included.
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