Handbook of Environmental Degradation of Materials
Autor Myer Kutzen Limba Engleză Paperback – 18 aug 2016
The Handbook of Environmental Degradation of Materials explains how to measure, analyse, and control environmental degradation for a wide range of industrial materials including metals, polymers, ceramics, concrete, wood and textiles exposed to environmental factors such as weather, seawater, and fire. Divided into sections which deal with analysis, types of degradation, protection and surface engineering respectively, the reader is introduced to the wide variety of environmental effects and what can be done to control them. The expert contributors to this book provide a wealth of insider knowledge and engineering knowhow, complementing their explanations and advice with Case Studies from areas such as pipelines, tankers, packaging and chemical processing equipment ensures that the reader understands the practical measures that can be put in place to save money, lives and the environment.
- The Handbook’s broad scope introduces the reader to the effects of environmental degradation on a wide range of materials, including metals, plastics, concrete,wood and textiles
- For each type of material, the book describes the kind of degradation that effects it and how best to protect it
- Case Studies show how organizations from small consulting firms to corporate giants design and manufacture products that are more resistant to environmental effects
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Specificații
ISBN-13: 9780128101735
ISBN-10: 0128101733
Pagini: 936
Dimensiuni: 152 x 229 mm
Greutate: 1.23 kg
Ediția:2
Editura: ELSEVIER SCIENCE
ISBN-10: 0128101733
Pagini: 936
Dimensiuni: 152 x 229 mm
Greutate: 1.23 kg
Ediția:2
Editura: ELSEVIER SCIENCE
Public țintă
Engineers: Civil, Mechanical, Materials, Design, Maintenance, Chemical & ProcessIndustries: construction / civil engineering, automotive / aerospace / transportation, chemical processing, consumer packaging, paints and coatings, petrochemical, pipeline, plastics.
Level: Practicing engineers and technicians, students seeking real-world examples and applied techniques.
Cuprins
Part I: Analysis1. Analysis of Failures of Metallic Materials due to Environmental Factors2. Laboratory Assessment of Corrosion3. Modeling of Corrosion Processes4. Lifetime Predictions
Part II: Types of Degradation5. Electrochemical Corrosion6. Localized Corrosion7. High-Temperature Oxidation8. Weathering of Plastics9. Chemical and Physical Aging of Polymers10. Thermal Degradation of Plastics11. Environmental Degradation of Reinforced Concrete12. Biofouling and prevention, and biodeterioration and biodegradation of materials13. Material Flammability14. Fire Retardant Materials
Part III: Protective Measures15. Cathodic Protection16. Thermal Protective Clothing17. Wood Protection18. Materials Selection for Environmental Degradation Prevention
Part IV: Surface Engineering19. The Intersection of Design, Manufacturing, and Surface Engineering (updated to include new coatings: (biomimetic, nanostructured and conductive polymers)20. Nanostructured Surfaces and Nanomaterial Coatings21. Protective Coatings for Aluminum Alloys22. Anti-Corrosion Paints23. Thermal and Environmental Barrier Coatings24. Thermay Spray Coatings25. Paint Weathering Tests26. Coatings for Concrete Surfaces: Testing and Modeling27. The importance of intrinsic defects in the protective behavior of coatings28. Plastics Additives for Environmental Stability
Part V: Industrial Applications29. Degradation of Spacecraft Materials30. Cathodic Protection for Pipelines31. Tanker Corrosion32. Barrier Packaging Materials33. Corrosion prevention and control programs for chemical processing equipment
Part II: Types of Degradation5. Electrochemical Corrosion6. Localized Corrosion7. High-Temperature Oxidation8. Weathering of Plastics9. Chemical and Physical Aging of Polymers10. Thermal Degradation of Plastics11. Environmental Degradation of Reinforced Concrete12. Biofouling and prevention, and biodeterioration and biodegradation of materials13. Material Flammability14. Fire Retardant Materials
Part III: Protective Measures15. Cathodic Protection16. Thermal Protective Clothing17. Wood Protection18. Materials Selection for Environmental Degradation Prevention
Part IV: Surface Engineering19. The Intersection of Design, Manufacturing, and Surface Engineering (updated to include new coatings: (biomimetic, nanostructured and conductive polymers)20. Nanostructured Surfaces and Nanomaterial Coatings21. Protective Coatings for Aluminum Alloys22. Anti-Corrosion Paints23. Thermal and Environmental Barrier Coatings24. Thermay Spray Coatings25. Paint Weathering Tests26. Coatings for Concrete Surfaces: Testing and Modeling27. The importance of intrinsic defects in the protective behavior of coatings28. Plastics Additives for Environmental Stability
Part V: Industrial Applications29. Degradation of Spacecraft Materials30. Cathodic Protection for Pipelines31. Tanker Corrosion32. Barrier Packaging Materials33. Corrosion prevention and control programs for chemical processing equipment