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Fracture Mechanics of Ceramics

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Table of Contents

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    Book Overview
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    Chapter 1 The Tensile Strength of Uniaxially Reinforced Ceramic Fiber Composites
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    Chapter 2 Applicability of Fracture Mechanics to Fiber-Reinforced CVD-Ceramic Composites
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    Chapter 3 Fracture of Sic Fiber/Glass-Ceramic Composites as a Function of Temperature
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    Chapter 4 Strength and Toughness Measurements of Ceramic Fiber Composites
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    Chapter 5 Toughening of Ceramics by Whisker Reinforcement
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    Chapter 6 Mechanical Properties of SiC-Whisker — Reinforced TZP
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    Chapter 7 Fracture Behavior of Brittle Matrix, Particulate Composites with Thermal Expansion Mismatch
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    Chapter 8 High-Temperature Mechanical Properties of Al 2 O 3 -SiC Composites
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    Chapter 9 Particulate Toughening in the MgAl 2 O 4 -xTiO 2 System
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    Chapter 10 Graphical Methods for Determining the Nonlinear Fracture Parameters of Silica and Graphite Refractory Composites
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    Chapter 11 Fiber-Matrix Bonding in Steel Fiber-Reinforced Cement-Based Composites
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    Chapter 12 Fracture Mechanics and Failure Processes in Polymer Modified and Blended Hydraulic Cements
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    Chapter 13 Fracture of Brittle Rock under Dynamic Loading Conditions
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    Chapter 14 An Impact Damage Model of Ceramic Coatings
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    Chapter 15 Hertzian Impact Fracture Test for Helicopter Windshields
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    Chapter 16 Numerical Approximating Forms for the Dynamic Stress Intensity Factor
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    Chapter 17 On the Statistical Theory of Fracture Location Combined with Competing Risk Theory
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    Chapter 18 The Use of Exploratory Data Analysis for the Safety Evaluation of Structural Ceramics
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    Chapter 19 Proof Testing to Assure Reliability of Structural Ceramics
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    Chapter 20 Assessment of Flaws in Ceramic Materials on the Basis of Non-Destructive Evaluation
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    Chapter 21 Mechanical Properties and Dependence with Temperature of Tetragonal Polycrystalline Zirconia Materials
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    Chapter 22 Prediction of Delayed Fracture from Crack Coalescence — Alumina
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    Chapter 23 Damage Accumulation in Hot Pressed Alumina During Flexural Creep and Anneals in Air
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    Chapter 24 Creep Cavitation Behavior in Polycrystalline Ceramics
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    Chapter 25 Matrix Representation of the Crack-Enhanced Creep of Ceramics under Conditions of Multi-Axial Loading
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Title
Fracture Mechanics of Ceramics
Published by
Springer, Boston, MA, December 2012
DOI 10.1007/978-1-4615-7023-3
ISBNs
978-1-4615-7025-7, 978-1-4615-7023-3
Editors

R. C. Bradt, A. G. Evans, D. P. H. Hasselman, F. F. Lange