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Fracture Mechanics: Fundamentals and Applications

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Item specifics

Condition
Like New
A book that has been read, but looks new. The book cover has no visible wear, and the dust jacket (if applicable) is included for hard covers. No missing or damaged pages, no creases or tears, no underlining or highlighting of text, and no writing in the margins. May have no identifying marks on the inside cover. No wear and tear. See the seller’s listing for full details and description of any imperfections. See all condition definitionsopens in a new window or tab
Seller notes
“Never opened”
Series
CRC Press
ISBN
9780849316562
Subject Area
Technology & Engineering, Science
Publication Name
Fracture Mechanics : Fundamentals and Applications
Item Length
10.1 in
Publisher
CRC Press LLC
Subject
Mechanics / General, Fracture Mechanics, Mechanical, Civil / General
Publication Year
2005
Type
Textbook
Format
Hardcover
Language
English
Item Height
1.5 in
Author
T. L. Anderson
Item Width
7.3 in
Item Weight
45.7 Oz
Number of Pages
640 Pages

About this product

Product Information

With its combination of practicality and readability, this comprehensive guide to fracture mechanics has been adopted by more than 100 universities and embraced by thousands of professional engineers worldwide. Now in its third edition, it continues to raise the bar in both scope and coverage. It encompasses theory and applications, linear and nonlinear fracture mechanics, solid mechanics, and materials science with a unified, balanced, and in-depth approach.

Product Identifiers

Publisher
CRC Press LLC
ISBN-10
0849316561
ISBN-13
9780849316562
eBay Product ID (ePID)
30234995

Product Key Features

Author
T. L. Anderson
Publication Name
Fracture Mechanics : Fundamentals and Applications
Format
Hardcover
Language
English
Subject
Mechanics / General, Fracture Mechanics, Mechanical, Civil / General
Publication Year
2005
Type
Textbook
Subject Area
Technology & Engineering, Science
Number of Pages
640 Pages

Dimensions

Item Length
10.1 in
Item Height
1.5 in
Item Width
7.3 in
Item Weight
45.7 Oz

Additional Product Features

Edition Number
3
LCCN
2004-062881
Intended Audience
College Audience
Lc Classification Number
Ta409
Edition Description
Revised Edition,New Edition
Table of Content
INTRODUCTION History and Overview Why Structures Fail Historical Perspective The Fracture Mechanics Approach to Design Effect of Material Properties on Fracture A Brief Overview of Dimensional Analysis References FUNDAMENTAL CONCEPTS Linear Elastic Fracture Mechanics An Atomic View of Fracture Stress Concentration Effect of Flaws The Griffith Energy Balance The Energy Release Rate Instability and the R Curve Stress Analysis of Cracks Relationship Between K and G Crack-Tip Plasticity K-Controlled Fracture Plane Strain Fracture: Fact Versus Fiction Mixed-Mode Fracture Interaction of Multiple Cracks Appendix 2: Mathematical Foundations of Linear Elastic Fracture Mechanics References Elastic-Plastic Fracture Mechanics Crack-Tip-Opening Displacement The J Contour Integral Relationships Between J and CTOD Crack-Growth Resistance Curves J-Controlled Fracture Crack-Tip Constraint Under Large-Scale Yielding Appendix 3: Mathematical Foundations of Elastic-Plastic Fracture Mechanics References Dynamic and Time-Dependent Fracture Dynamic Fracture and Crack Arrest Creep Crack Growth Viscoelastic Fracture Mechanics Appendix 4: Dynamic Fracture Analysis References MATERIAL BEHAVIOR Fracture Mechanisms in Metals Ductile Fracture Cleavage The Ductile-Brittle Transition Intergranular Fracture Appendix 5: Statistical Modeling of Cleavage Fracture References Fracture Mechanisms in Nonmetals Engineering Plastics Ceramics and Ceramic Composites Concrete and Rock References APPLICATIONS Fracture Toughness Testing of Metals General Considerations Klc Testing K-R Curve Testing J Testing of Metals CTOD Testing Dynamic and Crack-Arrest Toughness Fracture Testing of Weldments Testing and Analysis of Steels in the Ductile-Brittle Transition Region Qualitative Toughness Tests Appendix 7: Stress Intensity, Compliance, and Limit Load Solutions for Laboratory Specimens References Fracture Testing of Nonmetals Fracture Toughness Measurements in Engineering Plastics Interlaminar Toughness of Composites Ceramics References Application to Structures Linear Elastic Fracture Mechanics The CTOD Design Curve Elastic-Plastic J-Integral Analysis Failure Assessment Diagrams Probabilistic Fracture Mechanics Appendix 9: Stress Intensity and Fully Plastic J Solutions for Selected Configurations References Fatigue Crack Propagation Similitude in Fatigue Empirical Fatigue Crack Growth Equations Crack Closure The Fatigue Threshold Variable Amplitude Loading and Retardation Growth of Short Cracks Micromechanisms of Fatigue Fatigue Crack Growth Experiments Damage Tolerance Methodology Appendix 10: Application of the J Contour Integral to Cyclic Loading References Environmentally Assisted Cracking in Metals Corrosion Principles Environmental Cracking Overview Stress Corrosion Cracking Hydrogen Embrittlement Corrosion Fatigue Experimental Methods References Computational Fracture Mechanics Overview of Numerical Methods Traditional Methods in Computational Fracture Mechanics The Energy Domain Integral Mesh Design Linear Elastic Convergence Study Analysis of Growing Cracks Appendix 12: Properties of Singularity Elements References Practice Problems Index
Copyright Date
2005
Dewey Decimal
620.1/126
Dewey Edition
23
Illustrated
Yes

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