Thermal Shock and Thermal Fatigue Behavior of Advanced Ceramics by Gerold A. SchneiderThermal Shock and Thermal Fatigue Behavior of Advanced Ceramics by Gerold A. Schneider

Thermal Shock and Thermal Fatigue Behavior of Advanced Ceramics

EditorGerold A. Schneider, G. Petzow

Paperback | December 4, 2010

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Recent developments in advanced ceramics are critically evaluated in respect to their thermal shock and thermal fatigue behavior from an interdisciplinary viewpoint by leading experts. The book covers the aspects of material development, mechanical and fracture mechanical models and experimental testing methods. Special emphasis is given to the influence of a rising crack resistance on the thermal shock behavior, novel irradiation testing methods for a quantitative characterization of the thermal shock and fatigue loading as well as detailed fracture mechanical models for single and multiple crack propagation. This book summarizes developments of the last decade concerning the thermal shock and thermal fatigue behavior of advanced ceramics. The scientific articles of the book were carefully arranged in order to achieve a textbook-like form which will be of great value to researchers and students. (ABSTRACT) This book summarizes developments of the last decade concerning the thermal shock and thermal fatigue behavior of advanced ceramics. The book covers the aspects of material development, mechanical and fracture mechanical models and testing methods. The scientific articles were carefully arranged in order to achieve a textbook-like form which will be of great value to researchers and students.
Title:Thermal Shock and Thermal Fatigue Behavior of Advanced CeramicsFormat:PaperbackDimensions:607 pages, 9.45 × 6.3 × 0 inPublished:December 4, 2010Publisher:Springer NetherlandsLanguage:English

The following ISBNs are associated with this title:

ISBN - 10:9048142911

ISBN - 13:9789048142910

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Table of Contents

Preface. I: Overview. II: Materials Development - Thermal Shock Properties and Industrial Applications. III: Theory. 1. Fracture-Mechanical Modelling of Thermal Shock. 2. Tailoring of Materials. IV: Experimental Methods for the Characterization of Thermal Shock and Thermal Fatigue of Ceramics. 1. Thermal Shock. 2. Thermal Fatigue. 3. Probabilistic Characterization of Thermal Shock. V: Functionally Gradient and Fiber Reinforced Materials for Thermal Shock and Fatigue Applications. Author Index. Subject Index.