Bradt / Hasselman / Munz | Fracture Mechanics of Ceramics | E-Book | sack.de
E-Book

E-Book, Englisch, Band 10, 655 Seiten, eBook

Reihe: Fracture Mechanics of Ceramics

Bradt / Hasselman / Munz Fracture Mechanics of Ceramics

Fracture Fundamentals, High-Temperature Deformation, Damage, and Design
Erscheinungsjahr 2013
ISBN: 978-1-4615-3348-1
Verlag: Springer US
Format: PDF
Kopierschutz: 1 - PDF Watermark

Fracture Fundamentals, High-Temperature Deformation, Damage, and Design

E-Book, Englisch, Band 10, 655 Seiten, eBook

Reihe: Fracture Mechanics of Ceramics

ISBN: 978-1-4615-3348-1
Verlag: Springer US
Format: PDF
Kopierschutz: 1 - PDF Watermark



These volumes, 9 and 10, of Fracture Mechanics of Ceramics constitute the proceedings of an international symposium on the fracture mechanics of ceramic materials held at the Japan Fine Ceramics Center, Nagoya, Japan on July 15, 16, 17, 1991. These proceedings constitute the fifth pair of volumes of a continuing series of conferences. Volumes 1 and 2 were from the 1973 symposium, volumes 3 and 4 from a 1977 symposium, and volumes 5 and 6 from a 1981 symposium all of which were held at The Pennsylvania State University. Volumes 7 and 8 are from the 1985 symposium which was held at the Virginia Polytechnic Institute and State University. The theme ofthis conference, as for the previous four, focused on the mechanical behavior ofceramic materials in terms of the characteristics ofcracks, particularly the roles which they assume in the fracture processes and mechanisms. The 82 contributed papers by over 150 authors and co-authors represent the current state of that field. They address many of the theoretical and practical problems ofinterest to those scientists and engineers concerned with brittle fracture.

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Dissipative Processes Accompanying Fracture.- Fracto-Emission From Ceramics at Cryogenic Temperatures.- The Influence of The Network of Microcracks upon the Crack Propagation Behavior inside of Transparent Zirconia.- Critical Stress of Microcracking in Alumina Evaluated by Acoustic Emission.- Analysis of Precracking Parameters for Ceramic Single-Edge-Precracked-Beam Specimens.- Elevated-Temperature Fracture Resistances of Monolithic and Composite Ceramics Using Chevron-Notched Bend Tests.- Reliability of Ceramics Fracture Toughness Measurements by Indentation.- The Indentation Fracture Resistance of Self-Reinforced Mullites.- Cleavage of Ceramic and Mineral Single Crystals.- Indentation Fracture of Pure and MeV Energy Ion Implanted Sapphire.- Effects of Process Zone and Specimen Geometry on Fracture Toughness of Silicon Nitride Ceramic.- Biaxial Compressive Strength of Silicon Nitride: New Data - Micromechanics Models.- Fracture Behavior of Non-Oxide Ceramics under Biaxial Stresses.- Biaxial Flexure Testing: Analysis and Experimental Results.- Bending Fracture Strength of Sintered Silicon Nitride Disks with Shoulder Fillet at Room Temperature.- Evidence of Plastic Deformation on Slow Crack Growth of Borate Glass.- Precision Crack-Off of Ceramics.- Effect of Defects and Grain Size on Strength of Mullite Ceramics.- Evolution of Elastic and Mechanical Properties of Silica Aerogels during Gel-Glass Transformation.- A New Theory of Non-Destructive Inspection Based on Fracture Mechanics and Fracture Statistics.- A Statistical Analysis of Lifetime Predictions for Ceramics Exhibiting a Transition in Fatigue Crack Growth Behavior.- McClintock’s Statistics and Strength Safety Factor for Ceramics.- Creep Damage Mechanisms in Structural Ceramics.- High Temperature FractureMechanism of Gas-Pressure Sintered Silicon Nitride.- Characterization of The Flexural Strength Degradation of a Commercial Hot-Pressed Silicon Nitride in a High-Temperature Sulphidizing Environment.- High Temperature Failure Mechanisms of Sintered Silicon Nitride.- Fracture Behavior of a Silicon Nitride Ceramic Containing a High Temperature Ductile Phase.- Brittle-to-Ductile Transition in Silicon Nitride.- A Generic Model for Creep Rupture Lifetime Estimation on Fibrous Ceramic Composite.- Some Aspects of the Morphology and Creep Behavior of a Unidirectional SiCf -MLAS Material.- Creep Rupture Map of Engineering Fine Ceramics.- Observations on The Role of Cracks in the Non-Linear Deformation and Fracture Behavior of Polycrystalline Ceramics.- Fracture Toughness Measurement by Indentation Fracture Method at Elevated Temperature.- Effects of Exposure Time and Strain Rate on the Elevated-Temperature Tensile Strength of SiC Monofilaments.- Stress-Relaxation Tests Used to Determine the Elevated-Temperature Creep Parameters of Structural Ceramics.- Particle Impact Damage of Engineering Ceramics.- Strength Degradation of Ceramics Caused by Residual Stress Around Impression.- Evaluation and Simulation of Thermal Shock Behavior by Liquid Solder Quenching.- Analysis for Strength Degradation of Indented Specimens Due to Thermal Shock.- Strength Analysis of Ceramics under Mechanical and Thermal Loading.- Design Methodology for Manufacturing Glass Cathode Ray Tubes.- International Editorial Board, Organizing Committee, and Session Chairs.- Authors.



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