The Processing and Mechanical Properties of High Temperature/ High Performance Composites. Stress Redistribution and Notch Properties

The Processing and Mechanical Properties of High Temperature/ High Performance Composites. Stress Redistribution and Notch Properties
Author:
Publisher:
Total Pages: 317
Release: 1994
Genre:
ISBN:

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Topics discussed in this document include: (1) Cracking and stress redistribution in ceramic layered composites; (2) Notch sensitivity and stress redistribution in CMCs; (3) Notch-sensitivity and shear bands in brittle matrix composites; (4) On large scale sliding in fiber-reinforced composites; (5) On the tensile strength of a fiber-reinforced ceramic composite containing a crack- like flaw; (6) SiC/CAS: a notch insensitive ceramic matrix composite; (7) On the tensile properties of a fiber reinforced titanium matrix composite; (8) Localization due to damage in two directions for fiber reinforced composites; (9) An elliptical inclusion embedded in an anisotropic body; (10) On the strength of fiber reinforced ceramic composites containing an elliptic hole; (11) On the theoretical toughness and strength of ceramic composites; (12) Microlaminated high temperature intermetallic composites; and (13) Fracture toughness of Al-4%Mg/Al2O3P composites.

The Processing and Mechanical Properties of High Temperature/High Performance Composites. Book 5. Interface Effects

The Processing and Mechanical Properties of High Temperature/High Performance Composites. Book 5. Interface Effects
Author:
Publisher:
Total Pages: 314
Release: 1994
Genre:
ISBN:

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Partial contents: Mechanics of the Push-Out Process from In-Situ Measurement of the Stress Distribution along Embedded Sapphire Fiber; Relationships Between Hysteresis Measurements and the Constituent Properties of Ceramic Matrix Composites, I: theory; Relationships Between Hysteresis Measurements and the Constituent Properties of Ceramic Matrix Composites, II: experimental Studies on Unidirectional Materials; The Effect of Fiber-Matrix Reactions on the Interface Properties in a SCS-6/Ti-24A1-11Nb Composite; Fatigue growth and stress Redistribution at Interface; Dislocations, Steps and Disconnections at Interfaces; On the Directionality of Interfacial Cracking in Bicrystals and the loading phase angle dependence; Models for Metal/Ceramic Interface Fracture; and The Activation Energy for Dislocation nucleation from a Crack Tip.

Mechanical Properties and Performance of Engineering Ceramics and Composites IX, Volume 35, Issue 2

Mechanical Properties and Performance of Engineering Ceramics and Composites IX, Volume 35, Issue 2
Author: Dileep Singh
Publisher: John Wiley & Sons
Total Pages: 250
Release: 2014-11-03
Genre: Technology & Engineering
ISBN: 1119031184

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The Ceramic Engineering and Science Proceeding has been published by The American Ceramic Society since 1980. This series contains a collection of papers dealing with issues in both traditional ceramics (i.e., glass, whitewares, refractories, and porcelain enamel) and advanced ceramics. Topics covered in the area of advanced ceramic include bioceramics, nanomaterials, composites, solid oxide fuel cells, mechanical properties and structural design, advanced ceramic coatings, ceramic armor, porous ceramics, and more.

The Processing and Mechanical Properties of High Temperature/High Performance Composites. Book 4. Constitutive Laws and Design

The Processing and Mechanical Properties of High Temperature/High Performance Composites. Book 4. Constitutive Laws and Design
Author:
Publisher:
Total Pages: 484
Release: 1993
Genre:
ISBN:

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Partial Contents: Remarks on Crack-Bridging Concepts; Notch Ductile- to-Brittle Transition due to Localized Inelastic Band; On the Tensile Strength of a Fiber-Reinforced Ceramic Composites Containing a Crack-Like Flaw; Mechanical Behavior of a Continuous Fiber-Reinforced Aluminum Matrix Composite Subjected to Transverse and Thermal Loading; Modeling of Anisotropic Behavior of Weakly Bonded Fiber Reinforced MMCs; Transverse Ductility of Metal Matrix Composites; Localization due to Damage in Two Direction Fiber Reinforced Composites; On the Notch-Sensitivity and Toughness of a Ceramic Composite; Thermal, Mechanical and Creep Behavior of Metal Matrix Composite; and The Treatment of Fatigue and Damage Accumulation in Composite Design.

The Processing and Mechanical Properties of High Temperature/High Performance Composites. Book 7. In-Situ Measurements of Stress and Damage

The Processing and Mechanical Properties of High Temperature/High Performance Composites. Book 7. In-Situ Measurements of Stress and Damage
Author:
Publisher:
Total Pages: 137
Release: 1994
Genre:
ISBN:

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Partial Contents: Residual Stress Measurement in Sapphire Fiber Composites: Through-Focus and Transmission Fluorescence Spectroscopy; Measurement of Residual Stresses in Sapphire Fiber Composites Using Optical Fluorescence; Luminescence Sensing of Stress in Ti/A2O3 Fiber Reinforced Composites; Optical Fluorescence from Chromium Ions in Sapphire: A Probe of the Image Stress; Residual Stresses in A12O3-ZrO2 Composites: A Test and Stochastic Stress Models; Stress Measurement Using Optical Fluorescence.

The Processing and Mechanical Properties of High Temperature/ High Performance Composites. Mechanism-Based Constitutive Laws and Design

The Processing and Mechanical Properties of High Temperature/ High Performance Composites. Mechanism-Based Constitutive Laws and Design
Author:
Publisher:
Total Pages: 546
Release: 1994
Genre:
ISBN:

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This document discusses the following: (1) Materials selection and innovation in design; (2) Elasto-plastic analysis of interface layers for fiber- reinforced metal-matrix composites; (3) Modeling of anisotropic behavior of weakly bonded fiber reinforced MMCs; (4) On the tensile properties of a fiber reinforced titanium matrix composite; (5) Control of strength anisotropy of metal matrix fiber composites; (6) inelastic strains due to matrix cracking in unidirectional fiber-reinforced composites; (7) Location and ultimate tensile strength of fiber-reinforced ceramic-matrix composites; (8) Matrix cracking and debonding of ceramic-matrix composites; (9) Matrix cracking of cross-ply ceramic composites; (10) Transverse cracking in fiber-reinforced brittle matrix, cross- ply laminates; (11) The mechanisms of deformation and failure in carbon matrix composites subject to tensile and shear loading; (12) Uncoupled and coupled approaches to predict crack-initiation in fiber-reinforced ceramic-matrix composites; (13) Stress corrosion cracking in a unidirectional ceramic-matrix composite; (14) Effects of gauge length on the tensile strength of SiC fibers; (15) Tunneling cracks in constrained layers; (16) The effect of interfacial properties on the flow strength of discontinuous reinforced metal matrix composites; (17) On dislocation storage and the mechanical response of fine scale microstructures; and (18) Effect of microstructural parameters on the yield strength of Al-4%Mg/Al2O3p composites.

The Processing and Mechanical Properties of High Temperature/ High Performance Composites. Fatigue and Creep

The Processing and Mechanical Properties of High Temperature/ High Performance Composites. Fatigue and Creep
Author:
Publisher:
Total Pages: 568
Release: 1994
Genre:
ISBN:

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This document includes the following topics; (1) Mode I fatigue cracking in a fiber reinforced metal matrix composite; (2) Interfacial crack growth in fiber-reinforced metal-matrix composites; (3) Fatigue crack growth in fiber-reinforced metal-matrix composites; (4) Thermomechanical fatigue cracking in fiber reinforced metal matrix composites; (5) Transverse and cyclic thermal loading of the fiber reinforced metal-matrix composite SCS6/Ti-15-3; (6) Fatigue of ceramic matrix composite; (7) Ductile-reinforcement toughening in gamma gamma/TiAl intermetallic-matrix composites; effects on fracture toughness and fatigue-crack propagation resistance; (8) Creep models for metal matrix composites with long brittle fibers; (9) Models for the creep of ceramic matrix composite materials; (10) Power law creep of ceramic matrix composite materials; (10) Power law creep with interface slip and diffusion in a composite material; (11) Steady state creep of fiber-reinforced composites: Constitutive equations and computational issues; (12) The creep anisotropy of a continuous-fiber- reinforced SiC/CAS composite; (13) Power law creep of a composite material containing discontinuous rigid aligned fibers; and (14) Diffusive void bifurcation in stressed solid.