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Flaws and Testing


Flaws and Testing
132.63 CHF
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Lieferzeit: 21 Werktage

  • 10368170


Beschreibung

of Volume 3.- Fundamentals of the Statistical Theory of Fracture.- A General Approach to the Statistical Analysis of Fracture.- Application of the Four Function Weibull Equation in the Design of Brittle Components.- Multiple Flaw Fracture Mechanics Model for Ceramics.- Analysis of Microvoids in Si3N4 Ceramics by Small Angle Neutron Scattering.- Crack Blunting in Sintered SiC.- Alteration of Flaw Sizes and KIc's of Si3N4 Ceramics by Molten Salt Exposure.- Weibull Parameters and the Strength of Long Glass Fibers.- Surface Flaws and the Mechanical Behavior of Glass Optical Fibers.- Mechanical Behavior of Optical Fibers.- Spin Testing of Ceramic Materials.- Effects of Specimen Size on Ceramic Strengths.- Indentation Fracture and Strength Degradation in Ceramics.- Indentation Induced Strength Degradation and Stress Corrosion of Tempered Glasses.- Compressive Microfracture and Indentation Damage in Al2O3.- Microcracking Associated with the Scratching of Brittle Solids.- Crack Formation During Scratching of Brittle Materials.- Impact Damage in Ceramics.- Particle Impact Regimes in Single Crystals.- A High-Speed Photographic Investigation of the Impact Damage in Soda-Lime and Borosilicate Glasses by Small Glass and Steel Spheres.- Localized Impact Damage in a Viscous Medium (Glass).- Erosion of Brittle Materials by Solid Particle Impact.- Compression Testing of Ceramics.- The Strength of Ceramics Under Biaxial Stresses.- A Fracture Specimen for High Temperature Testing.- Application of Fracture Mechanics to the Adherence of Thick Films and Braze Joints.- A Notched Ring Fracture Toughness Test for Ceramics.- Short Rod KIC Measurements of Al2O3.- Impact Fracture of Ceramics at High Temperature.- Contributors.

Eigenschaften

Breite: 178
Gewicht: 914 g
Höhe: 254
Seiten: 506
Sprachen: Englisch
Autor: D. P. H. Hasselman, F. F. Lange, Richard C. Bradt

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