Conventional materials, such as nickel based alloys, will not be able to match the required performance specifications for the future generation of high temperature materials. This book reviews the characteristics and potential of a wide range of candidate superalloy replacements, such as cer
High-temperature Structural Materials
โ Scribed by M. McLean (auth.), R. W. Cahn, A. G. Evans, M. McLean (eds.)
- Publisher
- Springer Netherlands
- Year
- 1996
- Tongue
- English
- Leaves
- 212
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
โฆ Synopsis
Conventional materials, such as nickel based alloys, will not be able to match the required performance specifications for the future generation of high temperature materials. This book reviews the characteristics and potential of a wide range of candidate superalloy replacements, such as ceramics, intermetallics, and their composites. Particular attention is devoted to the problems of processing and design with these materials.
โฆ Table of Contents
Front Matter....Pages i-x
Nickel-base superalloys: current status and potential....Pages 1-15
Materials requirements for high-Temperature structures in the 21st century....Pages 17-31
Materials selection to resist creep....Pages 33-50
Reliability of structural ceramics....Pages 51-65
Ceramic matrix composites....Pages 67-78
Multiphase intermetallics....Pages 79-91
Ceramics and ceramic composites as high-temperature structural materials: challenges and opportunities....Pages 93-109
Quantum mechanical predictions in intermetallics modelling....Pages 111-124
Phase diagram calculations for high-temperature structural materials....Pages 125-143
Process modelling and microstructure....Pages 145-159
Mechanical testing of high-temperature materials: modelling data-scatter....Pages 161-176
Effect of matrix cracking on the overall thermal conductivity of fibre-reinforced composites....Pages 177-192
High-temperature mechanism-based design....Pages 193-205
Back Matter....Pages 207-211
โฆ Subjects
Characterization and Evaluation of Materials; Metallic Materials; Ceramics, Glass, Composites, Natural Methods
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