Advances in Corrosion Science and Technology
Kluwer Academic/Plenum Publishers (Verlag)
978-0-306-39503-1 (ISBN)
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Today, engineering solids include not only metals but glasses, ionic solids, polymeric solids, and composites of these. Environments of interest must be extended to liquid metals, a wide variety of gases, nonaqueous electrolytes, and other non- aqueous liquids.
1 Corrosion and Deposition of Steels and Nickel-Base Alloys in Liquid Sodium.- Corrosion in Simple Ideal Systems.- Behavior of Steels in Liquid Na.- Chemistry of Solid-Liquid Metal Reactions.- Solubilities of Fe, Cr, and Ni in Na.- Interactions among Metal Solutes in Na.- Interactions with Nonmetals.- Diffusivities of Fe, Cr, and Ni in Liquid Na.- Nature and Kinetics of Reactions at the Solid-Liquid Interface.- Corrosion and Deposition Observations.- Initial Corrosion of Steels in Na.- Effects of Oxygen on Corrosion of Steels and Ni-Base Alloys in Na.- Effects of Sodium Velocity on Corrosion of Steels and Ni-Base Alloys.- Effects of System Geometry on Corrosion Rate.- Effect of Temperature and Differential Temperature.- Deposition of the Corrosion Products in Sodium Systems.- Summary of Corrosion and Deposition Observations.- Corrosion Models.- General Models for Liquid Metal Corrosion.- Recent Hypotheses.- Proposed Model for the Corrosion of Stainless Steels in Na.- Discussion of the Proposed Corrosion Equation.- Quantitative Comparison between the Corrosion Equation (38) and Experimentally Observed Corrosion Rates.- Predictions of the Model.- Corrosion of Stainless Steels in Oxygen-Free Sodium.- Behavior of Minor Constituents of the Stainless Steel.- Summary.- Acknowledgments.- References.- 2 Stress-Corrosion Cracking of Titanium Alloys.- Physical Metallurgy of Titanium.- Allotropy of Titanium.- Phase Transformations in Titanium Alloys.- Deformation Modes of Titanium and Its Alloys.- Mechanical Properties and Microstructural Aspects of Commercial Alloys.- Effect of Interstitial Elements on the Mechanical Properties of Titanium Alloys.- Electrochemistry of Titanium.- Chemistry.- Thermodynamics.- Kinetics.- Reactions in Organic Solvents.- Reactions in Molten Salts.- Reactions in N2O4.- Presentation of Stress-Corrosion Cracking Data.- Mechanical Variables.- Environmental Variables.- Metallurgical Variables.- Fracture.- Morphology of Fracture.- Fracture in Aqueous Solutions.- Fracture in Methanolic Solutions.- Fracture in Other Organic Liquids.- Fracture in Nitrogen Tetroxide.- Fracture in Red Fuming Nitric Acid.- Fracture in Hot Salts.- Fracture in Molten Salts.- Fracture in Liquid Metals.- Crack Branching.- Features of Crack Propagation.- Discussion.- Basic Problems.- Models of SCC.- Practical Aspects of SCC of Titanium Alloys.- Industrial Uses of Titanium.- Design Considerations.- Material Selection.- Practical Application of SCC Data.- Prevention of SCC in Titanium Alloys.- Conclusions.- Acknowledgments.- References.- 3 Intergranular Corrosion of Iron-Nickel-Chromium Alloys.- The Iron-Nickel-Chromium System.- Review of Iron-Nickel-Chromium Metallurgy.- Review of the Electrochemistry of Iron-Nickel-Chromium Alloys.- Phenomenology and Models.- Sensitization of Austenitic Stainless Steels.- Sensitization of High-Nickel Alloys.- Sensitization of Ferrite Stainless Steels.- Duplex Stainless Steels.- Welding and Intergranular Attack.- Environmental Variables.- Intergranular Corrosion without Sensitization.- Intergranular Stress Corrosion Cracking.- Experimental Techniques and Method.- Chemical and Electrochemical Tests.- Electrochemical Tests.- Correlation of Tests with Service Environments.- Metallographic Techniques; Structural Analysis.- Miscellaneous Techniques.- Summary.- References.- Note Added in Proof.
| Zusatzinfo | 53 black & white illustrations, biography |
|---|---|
| Sprache | englisch |
| Maße | 160 x 250 mm |
| Themenwelt | Schulbuch / Wörterbuch |
| ISBN-10 | 0-306-39503-7 / 0306395037 |
| ISBN-13 | 978-0-306-39503-1 / 9780306395031 |
| Zustand | Neuware |
| Informationen gemäß Produktsicherheitsverordnung (GPSR) | |
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