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Original Essays | September 15, 2014

Lois Leveen: IMG Forsooth Me Not: Shakespeare, Juliet, Her Nurse, and a Novel



There's this writer, William Shakespeare. Perhaps you've heard of him. He wrote this play, Romeo and Juliet. Maybe you've heard of it as well. It's... Continue »
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Metal Fatigue in Engineering 2ND Edition

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Metal Fatigue in Engineering 2ND Edition Cover

 

Synopses & Reviews

Publisher Comments:

Classic, comprehensive, and up-to-date

Metal Fatigue in Engineering

Second Edition

For twenty years, Metal Fatigue in Engineering has served as an important textbook and reference for students and practicing engineers concerned with the design, development, and failure analysis of components, structures, and vehicles subjected to repeated loading.

Now this generously revised and expanded edition retains the best features of the original while bringing it up to date with the latest developments in the field.

As with the First Edition, this book focuses on applied engineering design, with a view to producing products that are safe, reliable, and economical. It offers in-depth coverage of today’s most common analytical methods of fatigue design and fatigue life predictions/estimations for metals. Contents are arranged logically, moving from simple to more complex fatigue loading and conditions. Throughout the book, there is a full range of helpful learning aids, including worked examples and hundreds of problems, references, and figures as well as chapter summaries and "design do’s and don’ts" sections to help speed and reinforce understanding of the material.

The Second Edition contains a vast amount of new information, including:

  • Enhanced coverage of micro/macro fatigue mechanisms, notch strain analysis, fatigue crack growth at notches, residual stresses, digital prototyping, and fatigue design of weldments
  • Nonproportional loading and critical plane approaches for multiaxial fatigue
  • A new chapter on statistical aspects of fatigue

Book News Annotation:

Written by teachers of mechanical engineering, this textbook and reference for students and engineers covers the design, development, and failure analysis of components, structures, and vehicles subjected to repeated loading. Thirteen chapters describe the most common analytical methods of fatigue design and fatigue life predictions for metals, from the simple to the complex. The second edition includes expanded coverage of micro/macro fatigue mechanisms, notch strain analysis, fatigue crack growth at notches, residual stresses, digital prototyping, and fatigue design of weldments, as well as a new chapter on the statistical aspects of fatigue.
Annotation c. Book News, Inc., Portland, OR (booknews.com)

Synopsis:

Classic, comprehensive, and up-to-date

Metal Fatigue in Engineering

Second Edition

For twenty years, Metal Fatigue in Engineering has served as an important textbook and reference for students and practicing engineers concerned with the design, development, and failure analysis of components, structures, and vehicles subjected to repeated loading.

Now this generously revised and expanded edition retains the best features of the original while bringing it up to date with the latest developments in the field.

As with the First Edition, this book focuses on applied engineering design, with a view to producing products that are safe, reliable, and economical. It offers in-depth coverage of today's most common analytical methods of fatigue design and fatigue life predictions/estimations for metals. Contents are arranged logically, moving from simple to more complex fatigue loading and conditions. Throughout the book, there is a full range of helpful learning aids, including worked examples and hundreds of problems, references, and figures as well as chapter summaries and "design do's and don'ts" sections to help speed and reinforce understanding of the material.

The Second Edition contains a vast amount of new information, including:

* Enhanced coverage of micro/macro fatigue mechanisms, notch strain analysis, fatigue crack growth at notches, residual stresses, digital prototyping, and fatigue design of weldments

* Nonproportional loading and critical plane approaches for multiaxial fatigue

* A new chapter on statistical aspects of fatigue

About the Author

RALPH I. STEPHENS is Professor of Mechanical Engineering at The University of Iowa in Iowa City. ALI FATEMI is Professor of Mechanical, Industrial, and Manufacturing Engineering at The University of Toledo in Ohio. ROBERT R. STEPHENS is Associate Professor of Mechanical Engineering at The University of Idaho in Moscow, Idaho. The late HENRY O. FUCHS was Professor, and then Professor Emeritus, at Stanford University in Palo Alto, California.

Table of Contents

Introduction and Historical Overview.

Fatigue Design Methods.

Macro/Micro Aspects of Fatigue of Metals.

Fatigue Tests and Stress-Life (S-N) Approach.

Cyclic Deformation and the Strain-Life (-N) Approach.

Fundamentals of LEFM and Applications to Fatigue Crack Growth.

Notches and Their Effects.

Residual Stresses and Their Effects on Fatigue Resistance.

Fatigue from Variable Amplitude Loading.

Multiaxial Stresses.

Environmental Effects.

Fatigue of Weldments.

Statistical Aspects of Fatigue.

Appendix.

Indexes.

Product Details

ISBN:
9780471510598
Author:
Stephens, Ralph I.
Author:
Stephens, Robert R.
Author:
Fatemi, Ali
Author:
Fuchgs, Henry O.
Author:
Stephens, Ralph I.
Author:
Fuchs, Henry O.
Publisher:
Wiley-Interscience
Location:
New York
Subject:
Metallurgy
Subject:
Engineering - General
Subject:
Engineering - Mechanical
Subject:
Material Science
Subject:
Fatigue
Subject:
Metals
Subject:
Mechanical
Subject:
Components
Subject:
STRUCTURES
Subject:
loading
Subject:
fatigue design
Subject:
fatigue life predictions/estimations
Subject:
Metals -- Fatigue.
Subject:
failure analysis, components, structures, loading, fatigue design, fatigue life predictions/estimations
Subject:
Metal-Metallurgy
Subject:
Failure Fracture
Copyright:
Edition Number:
2
Edition Description:
Includes bibliographical references and indexes.
Series Volume:
8
Publication Date:
November 2000
Binding:
HARDCOVER
Grade Level:
Professional and scholarly
Language:
English
Illustrations:
Yes
Pages:
496
Dimensions:
9.14x6.66x1.13 in. 1.86 lbs.

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Related Subjects

Engineering » Civil Engineering » General
Engineering » Mechanical Engineering » General
Engineering » Metal » Metallurgy
History and Social Science » Military » General History
Metaphysics » General
Reference » Science Reference » Technology
Science and Mathematics » Electricity » General Electronics
Science and Mathematics » Materials Science » General

Metal Fatigue in Engineering 2ND Edition New Hardcover
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$166.50 In Stock
Product details 496 pages Wiley-Interscience - English 9780471510598 Reviews:
"Synopsis" by , Classic, comprehensive, and up-to-date

Metal Fatigue in Engineering

Second Edition

For twenty years, Metal Fatigue in Engineering has served as an important textbook and reference for students and practicing engineers concerned with the design, development, and failure analysis of components, structures, and vehicles subjected to repeated loading.

Now this generously revised and expanded edition retains the best features of the original while bringing it up to date with the latest developments in the field.

As with the First Edition, this book focuses on applied engineering design, with a view to producing products that are safe, reliable, and economical. It offers in-depth coverage of today's most common analytical methods of fatigue design and fatigue life predictions/estimations for metals. Contents are arranged logically, moving from simple to more complex fatigue loading and conditions. Throughout the book, there is a full range of helpful learning aids, including worked examples and hundreds of problems, references, and figures as well as chapter summaries and "design do's and don'ts" sections to help speed and reinforce understanding of the material.

The Second Edition contains a vast amount of new information, including:

* Enhanced coverage of micro/macro fatigue mechanisms, notch strain analysis, fatigue crack growth at notches, residual stresses, digital prototyping, and fatigue design of weldments

* Nonproportional loading and critical plane approaches for multiaxial fatigue

* A new chapter on statistical aspects of fatigue

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