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Mechanical Properties of Ceramics, by John B. Wachtman, W. Roger Cannon, M. John Matthewson

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A Comprehensive and Self-Contained Treatment of the Theory and Practical Applications of Ceramic Materials
When failure occurs in ceramic materials, it is often catastrophic, instantaneous, and total. Now in its Second Edition, this important book arms readers with a thorough and accurate understanding of the causes of these failures and how to design ceramics for failure avoidance. It systematically covers:
-
Stress and strain
-
Types of mechanical behavior
-
Strength of defect-free solids
-
Linear elastic fracture mechanics
-
Measurements of elasticity, strength, and fracture toughness
-
Subcritical crack propagation
-
Toughening mechanisms in ceramics
-
Effects of microstructure on toughness and strength
-
Cyclic fatigue of ceramics
-
Thermal stress and thermal shock in ceramics
-
Fractography
-
Dislocation and plastic deformation in ceramics
-
Creep and superplasticity of ceramics
-
Creep rupture at high temperatures and safe life design
-
Hardness and wear
-
And more
While maintaining the first edition's reputation for being an indispensable professional resource, this new edition has been updated with sketches, explanations, figures, tables, summaries, and problem sets to make it more student-friendly as a textbook in undergraduate and graduate courses on the mechanical properties of ceramics.
- Sales Rank: #182357 in Books
- Published on: 2009-04-20
- Original language: English
- Number of items: 1
- Dimensions: 9.60" h x 1.10" w x 6.30" l, 1.70 pounds
- Binding: Hardcover
- 496 pages
From the Inside Flap
The Mechanical Properties of Ceramics
Second Edition
A comprehensive and self-contained treatment of the theory and practical applications of ceramic materials
From the Back Cover
A Comprehensive and Self-Contained Treatment of the Theory and Practical Applications of Ceramic Materials
When failure occurs in ceramic materials, it is often catastrophic, instantaneous, and total. Now in its Second Edition, this important book arms readers with a thorough and accurate understanding of the causes of these failures and how to design ceramics for failure avoidance. It systematically covers:
-
Stress and strain
-
Types of mechanical behavior
-
Strength of defect-free solids
-
Linear elastic fracture mechanics
-
Measurements of elasticity, strength, and fracture toughness
-
Subcritical crack propagation
-
Toughening mechanisms in ceramics
-
Effects of microstructure on toughness and strength
-
Cyclic fatigue of ceramics
-
Thermal stress and thermal shock in ceramics
-
Fractography
-
Dislocation and plastic deformation in ceramics
-
Creep and superplasticity of ceramics
-
Creep rupture at high temperatures and safe life design
-
Hardness and wear
-
And more
While maintaining the first edition's reputation for being an indispensable professional resource, this new edition has been updated with sketches, explanations, figures, tables, summaries, and problem sets to make it more student-friendly as a textbook in undergraduate and graduate courses on the mechanical properties of ceramics.
About the Author
John B. Wachtman, PHD, was Sosman Professor of Ceramics at Rutgers University in New Jersey. Since he received his degree from the University of Maryland in 1961, he has worked as a research scientist, division chief, and director of the Center for Materials Research at the National Bureau of Standards. Dr. Wachtman is the author of several books and holds many awards, honors, and offices in various scientific societies.
W. Roger Cannon, PHD, is Professor Emeritus of Materials Science and Engineering at Rutgers University. He was previously on the research staff of MIT's Ceramic Processing Laboratory after receiving his PhD from Stanford University. His interests include mechanical properties, especially creep, sintering, and tape casting.
M. John Matthewson, PHD, is Professor of Materials Science and Engineering at Rutgers University. His research interests include the mechanical properties and reliability of materials and, in particular, of optical fiber and fiber components. He also works on computational modeling of various materials-related issues, including processing, sintering, and lifetime calculations.
Most helpful customer reviews
2 of 2 people found the following review helpful.
Quality text both for learning and reference
By tplash
I find this text to be very useful. I used it primarily as a supplement to the class lectures/notes. Currently its on my bookshelf, and I intend to keep it for future reference.
Pros:
-A great reference if you read a lot of articles dealing with strength/failure assessment of materials.
-Lots of information on material design. What kind of compositions lead to high strength or very tough materials, etc.
-Lots of example data/plots. I find these really helpful when I'm trying to make sense of a figures in journal articles.
Cons:
-I had to review some of the derivations a few times to understand what was going on... Although to be fair, its a rare text that imparts complete understanding in one read through.
1 of 1 people found the following review helpful.
Thorough reference
By canonicalbrud
The 2nd edition is a great engineering resource. It is very clear and concise, yet thorough. The abundance of references is also very helpful. Highly recommended!
0 of 0 people found the following review helpful.
great book
By wensheng wang
The book is great. I finished my first read. Now I am doing second read. The principles are explained clearly and easy to follow. Quite number of figures and graphs are included to illustrate the text. I love it.
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