Life Prediction Methodology for Titanium Matrix Composites

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Editorial Reviews

Booknews
Papers presented at the March 1994 symposium are organized into five sections that progress from basic understanding of mechanical damage mechanisms and environmental effects to life prediction methodology. Five papers discuss the interplay between interfacial strength, residual thermal stresses, and the effects of time and temperature; four focus on the role of fiber bridging in the progression of damage; seven deal with the complex aspects of experimentally determining inelastic material responses and how to model such behavior in a composite; and six papers present various approaches to tying together all the basic understanding into a methodology for prediction of the total life of a TMC. Annotation c. Book News, Inc., Portland, OR (booknews.com)
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Product Details

  • ISBN-13: 9780803120396
  • Publisher: American Society for Testing & Materials
  • Publication date: 4/28/1996
  • Series: Special Technical Publications , #1253
  • Pages: 632

Table of Contents

Overview 1
Interfacial Mechanics and Macroscopic Failure in Titanium-Based Composites 5
Effects of Reaction Layer on Interfacial Shear Properties and Strength of Fiber in Silicon-Carbide (SiC) Fiber-Reinforced Titanium Alloy Composite 26
Fiber-Matrix Micromechanics and Microstructural Observations Under Tensile and Cyclic Loading 43
The Role of Frictional Sliding in Transverse Failure of a Titanium Aluminide Composite 58
Issues Related to Prediction of Residual Stresses in Titanium Alloy Matrix Composites 66
Stress Transfer Mechanics: Models that Should be the Basis for Life Prediction Methodology 85
Crack-Bridging Effects in Notch Fatigue of SCS-6/TIMETAL 21S Composite Laminates 114
High Temperature/High Frequency Fatigue Crack Growth in Titanium Metal Matrix Composites 137
Modeling and Prediction of Crack Arrest in Fiber-Reinforced Composites 164
Sustained Load Behavior of SCS-6/TIMETAL 21s Composites 185
Inelastic Deformation Mechanisms in SCS-6/Ti 15-3 Metal Matrix Composite (MMC) Lamina Under Compression 208
A Fully Associative, Nonlinear Kinematic, Unified Viscoplastic Model for Titanium-Based Matrices 231
Inelastic Deformation of Titanium Matrix Composites Under Multiaxial Loading 257
Time-Dependent Deformation of Titanium Metal Matrix Composites 278
A Comparison of Analysis Tools for Predicting the Inelastic Cyclic Response of Cross-Ply Titanium Matrix Composites 297
Modeling of Thermomechanical Fatigue in [actual symbol not reproducible] Sigma/TIMETAL 21S Laminates 328
Prediction of Matrix Fatigue Crack Initiation from Notches in Titanium Matrix Composites 359
Fatigue Damage Evolution and Degradation of Mechanical Properties in Silicon-Carbide (SiC) Fiber-Reinforced Titanium Matrix Composites 377
Matrix Fatigue Cracking in [alpha][subscript 2] Titanium Matrix Composites for Hypersonic Applications 395
Characterization of Damage Progression in SCS-6/TIMETAL 21S [0][subscript 4] Under Thermomechanical Fatigue Loading 412
Fatigue Maps for Titanium Matrix Composites 432
Characterization of Crack Growth Resistance Under Cyclic Loading in the Presence of an Unbridged Defect in Fiber-Reinforced Titanium Metal Matrix Composites 461
A Hot-Spot Thermal Fatigue Test of a Titanium Matrix Composite 480
A Methodology to Predict Damage Initiation, Damage Growth, and Residual Strength in Titanium Matrix Composites 497
Titanium Matrix Composite Durability Analyses for the Design of Airframe Structures 520
Simulation of Fatigue Behavior of High Temperature Metal Matrix Composites 540
Life Prediction for Bridged Fatigue Cracks 552
Modeling and Life Prediction Methodology for Titanium Matrix Composites Subjected to Mission Profiles 573
Life Prediction of a [0/90] Metal Matrix Composite Under Isothermal and Thermomechanical Fatigue 595
Author Index 619
Subject Index 621
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