Deformation Studies of Quasicrystals | p. 99 |
Deformation of Nonstoichiometric CuO Polycrystals | p. 109 |
Plastic Deformation of Bulk YBaCuO Ceramics Doped with ZrO[subscript 2] | p. 119 |
Impression Plasticity and Creep in Hard Crystals | p. 131 |
Deformation of Advanced Materials: Case of Sapphire Modified by Heavy Ion Implantation and of YBCO Superconducting Crystals | p. 149 |
Spherical Indentation as a Means for Investigating the Plastic Deformation of Ceramics | p. 161 |
The Nanoindentation Response of Silicon and Related Structurally Similar Materials | p. 173 |
Investigation of Depth-Area Relationships Associated with Nanoindentations | p. 185 |
"Nano" and "Micro" Hardnesses of Single Crystal Yttrium Aluminum Garnet (YAG) on the{111} Plane | p. 195 |
Deformation of Thin Ceramic Films Designed for Electronic Applications | p. 207 |
Apparent Indentation Plasticity in Ceramic Coated Systems | p. 219 |
Hardness Change of Nonstoichiometric MgO.3Al[subscript 2]O[subscript 3] by Neutron Irradiation | p. 231 |
The Cumulative Deformation, Work-Hardening and Fracture of Magnesium Oxide at Room Temperature, Under Repeated Point Loading Conditions | p. 241 |
The Characteristics of Superplastic-like Flow in Ceramics | p. 251 |
Solution-Precipitation Creep Model for Superplastic Ceramics with Intergranular Liquid Film | p. 269 |
A Granular Flow Approach to Fine-Grain Superplasticity | p. 279 |
Creep Deformation of Nanocrystalline Oxides | p. 285 |
Characterization of High-Temperature Superplasticity in Fine-Grained Zirconia Polycrystals | p. 293 |
A Quantitative Analysis of Cavity Formation in Superplastic Yttria-Stabilized Tetragonal Zirconia | p. 301 |
Superplastic Deformation of CuO-Doped 3Y-TZP | p. 313 |
Superplastic Forming of Zirconia | p. 321 |
Superplastic Deformation of Zirconia/Alumina Composites Produced by Reaction Bonding | p. 333 |
Enhanced Ductility of High-Purity Polycrystalline Yttria | p. 343 |
Superplastic Deformation of a Monolithic Silicon Nitride | p. 351 |
Creep Mechanisms in Multiphase Ceramics | p. 359 |
High-Temperature Deformation Mechanisms in Ceramic Materials | p. 369 |
Creep Recovery Mechanisms | p. 381 |
Deformation of High-Temperature Superconductors | p. 393 |
Stable Dislocation Configurations in [actual symbol not reproducible] | p. 403 |
Creep Behavior of Cation Solid Solution Alloys | p. 415 |
Kinetics and Mechanisms of Constant Stress Creep in the Non-Oxide Ceramics of SiC, SiC-Whisker-Reinforced Si[subscript 3]N[subscript 4] Composites and AlN | p. 424 |
Dislocation Mechanisms in Alpha SiC Deformed at High Temperature | p. 445 |
Evolution of Oxidation and Creep Damage Mechanisms in HIPed Silicon Nitride Materials | p. 457 |
Bend Stress Relaxation and Tensile Primary Creep of Polycrystalline [alpha]-SiC Fiber | p. 467 |
Importance of Cavitation to the Creep of Structural Ceramics | p. 479 |
The Role of Grain Boundary Sliding on Creep Deformation Characteristics of Discontinuous Reinforced Composites | p. 495 |
High-Temperature Deformation of Dual Phase Alumina-Zirconia Composites | p. 507 |
Tensile Creep of Alumina and SiC Whisker-Reinforced Alumina | p. 519 |
Plastic Deformation of Alumina Reinforced with SiC Whiskers | p. 533 |
Creep Behavior in SiC Whisker-Reinforced Alumina Composite | p. 543 |
High-Temperature Creep Behavior of High-Purity Hot-Pressed Silicon Nitride | p. 555 |
Creep and Fatigue of SiC Fiber-Reinforced BMAS Glass-Ceramic Matrix Composites | p. 567 |
Morphology and Deformation Characteristics of a CMC Based on a MLAS Vitroceramic Matrix | p. 577 |
Fatigue Crack Growth in Ceramics and Ceramic Composites at High Temperatures | p. 589 |
Mechanical Response of Ceramic Composites at Elevated Temperatures | p. 601 |
Issues for Creep and Rupture Evaluation of Ceramic Fibers | p. 619 |
Crack-Wake Plasticity and Time-Dependent Bridging During Subcritical Crack Growth in CVI-SiC Reinforced with Nicalon Fibers | p. 631 |
Evaluation of Elevated-Temperature Crack Growth in Ceramics under Static and Cyclic Loads | p. 643 |
Effect of Grain Size on Fatigue Crack Growth in Silicon Nitride and Alumina | p. 653 |
Index | p. 667 |
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