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[资源]
Environmental Effects on Engineered Materials
Environmental Effects on Engineered Materials
edited by
Russel H. Jones
Pacific Northwest National Laboratory
Richland, Washington
Copyright © 2001 by Marcel Dekker, Inc. All Rights Reserved.
Contents
Preface iii
Contributors vii
I. Metallic Alloys
1. Ferrous Alloys (Ferritic and Martensitic) 1
Bruce Craig
2. Austenitic Stainless Steels 31
Russell H. Jones, Stephen M. Bruemmer, Mike J. Danielson,
and Bruce Craig
3. Nickel-Based Alloys for Resistance to Aqueous Corrosion 55
Paul Crook
4. Nickel-Based Alloys for Resistance to High-Temperature
Corrosion 75
Mark A. Harper and George Y. Lai
5. Corrosion of Copper and Its Alloys 115
Andrew James Brock
6. Reactive and Refractory Alloys 151
Te-Lin Yau
7. Aluminum Alloys 173
N. J. Henry Holroyd
8. Magnesium Alloys 253
Mike J. Danielson
II. Intermetallic Alloys
9. Environmental Embrittlement of Nickel-Based and Iron-Based
Intermetallics 275
Norman S. Stoloff
III. Ceramics
10. Nonoxide Ceramics 311
Nathan S. Jacobson and Elizabeth J. Opila
11. Oxide Ceramics 351
F. S. Pettit, G. H. Meier, and J. R. Blache`re
IV. Composites
12. Metal Matrix Composites 375
Russell H. Jones
13. Ceramic Matrix Composites 391
Russell H. Jones, C. H. Henager, Jr., Charles A. Lewinsohn,
and Charles F. Windisch, Jr.
14. Issues in Predicting Long-Term Environmental Degradation of
Fiber-Reinforced Plastics 419
Aaron Barkatt
V. Metallic Glasses
15. Amorphous and Nanocrystalline Alloys 459
Koji Hashimoto
Index 501![Environmental Effects on Engineered Materials]()
Environmental Effects on Engineered Materials.png |
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