- Hardcover: 784 pages
- Publisher: McGraw-Hill Education; 3 edition (1 April 1986)
- Language: English
- ISBN-10: 0070168938
- ISBN-13: 978-0070168930
- Product Dimensions: 16.3 x 4.3 x 24.6 cm
- Boxed-product Weight: 1.2 Kg
- Average Customer Review: Be the first to review this item
Mechanical Metallurgy Hardcover – 1 Apr 1986
ISBN-13: 978-0070168930 ISBN-10: 0070168938 Edition: 3rd
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Most helpful customer reviews on Amazon.com
Amazon.com: 15 reviews
One of the best textbooks I've used6 April 2010 - Published on Amazon.com
This book contains tons of useful information on almost everything regarding mechanical properties of materials. It isn't overly dense with formulas and derivations, nor is it overly simplified. The explanations are extremely well-written and the book is well-organized; clearly separating theory from practical applications (nearly half the book is about processing and testing). Examples are well-integrated into the text, not set off to the side.
Jairo Ap Martins
Very conceptual and useful to metallurgy understanding10 October 2008 - Published on Amazon.com
This book brings very important principles of metallurgy and moreover usefull concepts to design products based on the worthy knowledge presented. Particularly the chapters about Fatigue, Fracture and Stresses Calculations in my opinion are of such importance to design robust products. The author is very didatic which makes the reading pleasant, of easy learning and application.
Five Stars4 January 2015 - Published on Amazon.com
A fantastic book if you are interested in metal material science. Very thorough and presented well.
Five Stars6 November 2016 - Published on Amazon.com
Excellent reference material for engineering students.
Definitely would recommend.
Definitely would recommend.
Ravi N. Shenoy
Mechanical Metallurgy22 July 2011 - Published on Amazon.com
An excellent primer on all aspects of mechanical metallurgy, covering the basics of dislocation theory for an understanding of mechanical properties of materials; fracture mechanics; and metal forming processes.
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