Iron and steel remain the most commonly used materials in manufacturing. This book is a complete treatment of iron and steel including some history, methods involved in their production, descriptions of various steels and cast irons and their properties and how they are heat treated.
Iron and steel remain the most commonly used materials in manufacturing. This book is a complete treatment of iron and steel including some history, methods involved in their production, descriptions of various steels and cast irons and their properties and how they are heat treated.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
William Hosford is Professor Emeritus of Materials Science at the University of Michigan. He is the author of numerous research publications, and the following books: The Mechanics of Crystals and Textured Polycrystals (1993), Physical Metallurgy (Materials Engineering) (2005), Materials Science: An Intermediate Text (2007), Materials for Engineers (2008), Mechanical Behavior of Materials, 2nd edition (2009), Solid Mechanics (2010), Physical Metallurgy, 2nd edition (2010), Metal Forming: Mechanics and Metallurgy, 4th edition with Robert M. Caddell (2011).
Inhaltsangabe
1. General introduction 2. Early history of iron and steel 3. Modern steel making 4. Constitution of carbon steels 5. Plastic strength 6. Annealing 7. Deformation mechanisms and crystallographic textures 8. Substitutional solid solutions 9. Interstitial solid solutions 10. Diffusion 11. Strain aging 12. Austenite transformation 13. Hardenability 14. Tempering and surface hardening 15. Low-carbon steel 16. Sheet steel formability 17. Alloy steels 18. Other steels 19. Stainless steels 20. Fracture 21. Cast irons 22. Magnetic behavior of iron and steel Appendix 1. Physical properties of pure iron Appendix 2. Approximate hardness conversions and tensile strengths of steels.
1. General introduction 2. Early history of iron and steel 3. Modern steel making 4. Constitution of carbon steels 5. Plastic strength 6. Annealing 7. Deformation mechanisms and crystallographic textures 8. Substitutional solid solutions 9. Interstitial solid solutions 10. Diffusion 11. Strain aging 12. Austenite transformation 13. Hardenability 14. Tempering and surface hardening 15. Low-carbon steel 16. Sheet steel formability 17. Alloy steels 18. Other steels 19. Stainless steels 20. Fracture 21. Cast irons 22. Magnetic behavior of iron and steel Appendix 1. Physical properties of pure iron Appendix 2. Approximate hardness conversions and tensile strengths of steels.
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