9780871705075-0871705079-Fatigue Data Book: Light Structural Alloys

Fatigue Data Book: Light Structural Alloys

ISBN-13: 9780871705075
ISBN-10: 0871705079
Author: Faith Reidenbach, Scott D. Henry
Publication date: 1750
Publisher: Asm Intl
Format: Hardcover 397 pages
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Book details

ISBN-13: 9780871705075
ISBN-10: 0871705079
Author: Faith Reidenbach, Scott D. Henry
Publication date: 1750
Publisher: Asm Intl
Format: Hardcover 397 pages

Summary

Fatigue Data Book: Light Structural Alloys (ISBN-13: 9780871705075 and ISBN-10: 0871705079), written by authors Faith Reidenbach, Scott D. Henry, was published by Asm Intl in 1750. With an overall rating of 4.1 stars, it's a notable title among other books. You can easily purchase or rent Fatigue Data Book: Light Structural Alloys (Hardcover) from BooksRun, along with many other new and used books and textbooks. And, if you're looking to sell your copy, our current buyback offer is $0.38.

Description

This one volume consolidates fatigue data on aluminum, magnesium, and titanium alloys in a single, comprehensive source. You get over 500 tables and figures that cover much of the known S-N fatigue information for common light structural alloys. This book provides comprehensive coverage from several published and unpublished sources, including newly released fatigue data from the Naval Research Laboratory. Sections include: Aluminum Alloys Introductory article with information on new-quality (reduced porosity) aluminum alloys Data sheets with more than 80 tables consolidating Al-alloy S-N data from various sources More than 50 modified Goodman diagrams illustrating Al-alloy fatigue resistance at different stress ratios Selected S-N curves for key alloys Magnesium Alloys Introductory article on the metallurgy and fracture resistance of magnesium alloys Over 50 data sheets providing one of the most comprehensive collections ever on the fatigue resistance of Mg-Al Casting Alloys, Mg-Al Wrought Alloys, Mg-Zn Alloys, Titanium Alloys, and many more. Over 40 pages devoted exclusively to the fatigue behavior of Ti-6A1-4V.
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