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Mechanical properties of ceramics / John B. Wachtman.

By: Material type: TextTextPublisher: New York : Wiley, [1996]Description: xxii, 448 pages : illustration ; 25 cmContent type:
  • text
Media type:
  • unmediated
Carrier type:
  • volume
ISBN:
  • 0471133167 (cloth : acidfree paper)
Subject(s): DDC classification:
  • 620.140423 20 W.J.M
LOC classification:
  • TA455.C43 W38 1996
Online resources:
Contents:
Stress and Strain. Types of Mechanical Behavior. Elasticity. Strength of Defect--Free Solids. Linear Elastic Fracture Mechanics. Statistical Treatment of Strength. Subcritical Crack Propagation. Stable Crack Propagation and R--Curve Behavior. An Overview of Toughening Mechanisms in Ceramics. Toughening by Transformation. Cyclic Fatigue of Ceramics. Thermal Stress and Thermal Shock in Ceramics. Fractography. Dislocations and Plastic Deformation in Ductile Crystals. Dislocations and Plastic Deformation in Ceramics. Creep in Ceramics. Mechanical Properties of Glass and Glass--Ceramics. Mechanical Behavior of Aluminum Oxide. Mechanical Properties of Silicon Carbide. Mechanical Properties of Porous Ceramics. References. Index.
Summary: This reference shows how to account for all the variables when designing and producing microstructures or ceramic devices, and offers a cohesive theoretical treatment.
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"A Wiley-Interscience publication."

engineering bookfair2015

Includes bibliographical references (pages 413-442) and index.

Stress and Strain. Types of Mechanical Behavior. Elasticity. Strength of Defect--Free Solids. Linear Elastic Fracture Mechanics. Statistical Treatment of Strength. Subcritical Crack Propagation. Stable Crack Propagation and R--Curve Behavior. An Overview of Toughening Mechanisms in Ceramics. Toughening by Transformation. Cyclic Fatigue of Ceramics. Thermal Stress and Thermal Shock in Ceramics. Fractography. Dislocations and Plastic Deformation in Ductile Crystals. Dislocations and Plastic Deformation in Ceramics. Creep in Ceramics. Mechanical Properties of Glass and Glass--Ceramics. Mechanical Behavior of Aluminum Oxide. Mechanical Properties of Silicon Carbide. Mechanical Properties of Porous Ceramics. References. Index.

This reference shows how to account for all the variables when designing and producing microstructures or ceramic devices, and offers a cohesive theoretical treatment.

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