Corrosion and corrosion protection is one of most important topics in applied materials science. Corrosion science is not only important from an economic point of view, but, due to its interdisciplinary nature combining metallurgy, materials physics and electrochemistry, it is also of high scientifi
Materials Science and Technology: A Comprehensive Treatment: Corrosion and Environmental Degradation, Volumes I+II
- Publisher
- Wiley-VCH Verlag GmbH
- Year
- 2000
- Tongue
- English
- Leaves
- 1082
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Synopsis
Corrosion and corrosion protection is one of most important topics in applied materials science. Corrosion science is not only important from an economic point of view, but, due to its interdisciplinary nature combining metallurgy, materials physics and electrochemistry, it is also of high scientific interest. Nowadays corrosion science even gets new impetus from surface science and polymer chemistry.
This two-volume reference work belonging to the well renown series Materials Science and Tehcnology provides the reader with a sound and broad survey on the whole subject - from the fundamentals to the latest research results. Written by a team of international top-experts it will become an indispensable reference for any materials scientist, physicist or chemist involved in corrosion science.
Chapter 1 Phenomenological and Electrochemical Fundamentals of Corrosion (pages 1β66): Hans?Henning Strehblow
Chapter 2 Fundamentals of High Temperature Corrosion (pages 67β130): Michael Schutze
Chapter 3 Passivity of Metals and Alloys (pages 131β169): Philippe Marcus and Vincent Maurice
Chapter 4 Microbial Corrosion (pages 171β205): Wolfgang Sand
Chapter 5 Environment Sensitive Fracture (pages 207β263): Thierry Magnin and Pierre Combrade
Chapter 6 Effect of Multiphase Flow on Corrosion (pages 265β284): Madan Gopal and W. Paul Jepson
Chapter 7 Novel Electrochemical Techniques in Corrosion Research (pages 285β381): Guido Grundmeier, Klaus?Michael Juttner and Martin Stratmann
Chapter 8 Cathodic and Anodic Protection (pages 383β470): Romuald Juchniewicz, Jezmar Jankowski and Kazimierz Darowicki
Chapter 9 Environmentally Friendly Corrosion Inhibitors (pages 471β537): Erika Kalman, Ilona Felhosi, Franciska H. Karman, Istvan Lukovits, Judit Telegdi and Gabor Palinkas
Chapter 1 Corrosion of Steels (pages 1β68): Michael Hagen
Chapter 2 Corrosion of Non?Ferrous Alloys. I. Nickel?, Cobalt?, Copper?, Zirconium?and Titanium?Based Alloys (pages 69β111): Raul B. Rebak
Chapter 3 Corrosion of Non?Ferrous Alloys. II. Aluminum?Based Alloys (pages 113β130): Osami Seri
Chapter 4 Corrosion of Non?Ferrous Alloys. III. Magnesium Alloys (pages 131β171): Guangling Song and Andrejs Atrens
Chapter 5 High?Temperature Corrosion of Metallic Alloys and Coatings (pages 173β228): Brian Gleeson
Chapter 6 High?Temperature Oxidation and Corrosion of Intermetallics (pages 229β325): M. P. Brady, B. A. Pint, P. F. Tortorelli, I. G. Wright and R. J. Hanrahan Jr.
Chapter 7 Corrosion of Ceramic Materials (pages 327β388): Elizabeth J. Opila and Nathan S. Jacobson
Chapter 8 Corrosion of Steel in Concrete (pages 389β436): B. Elsener
Chapter 9 Corrosion Engineering of Electronic and Photonic Devices (pages 437β467): R. B. Comizzoli, R. P. Frankenthal and J. D. Sinclair
Chapter 10 Degradation and Stabilization of Polymers (pages 469β507): N. C. Billingham
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