A professional reference for advanced courses in two of the most common manufacturing processes: metal forming and metal cutting.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Henry Valberg is a professor in the Department of Engineering Science and Materials at the Norwegian University of Science and Technology (NTNU). He began his professional career as a metallurgist at LFK, the Royal Norwegian Airforce, and then at A/S Norsk Jernverk, Mo i Rana, and finally as a Research Scientist at SINTEF, Division of Materials and Processes, before joining the Norwegian Institute of Technology (NTH) as a senior lecturer in 1984 and full professor in 1994. He was a visiting professor at Denmark's Technical University in 1997-98. Professor Valberg's main fields of research are materials, metal forming, experimental deformation analysis, and FE analysis. His work covers all main metal forming processes, including forging, rolling, extrusion, drawing, and sheet-metal forming. He is the author of more than 60 refereed journal articles and has supervised numerous graduate students. Valberg is currently a research manager for a forging project run by three Norwegian forging companies.
Inhaltsangabe
1. Characteristics of metal forming 2. Important metal forming processes 3. FEM-analysis of metal forming 4. Theory 5. Reduction and proportion of plastic zone 6. Deformations from velocity fields 7. Technological tests and physical simulation 8. Flow stress data 9. Formability and workability 10. Friction and friction models 11. Thermal effects 12. Experimental metal flow analysis 13. Theoretical methods of analysis 14. Finite element analysis 15. FEM-analysis of technological tests 16. Forging 17. FEM-analysis of forging 18. Extrusion 19. FEM-analysis of extrusion 20. Rolling 21. FEM-analysis of rolling 22. Drawing of wire, profiles and tubes 23. FEM-analysis of wiredrawing 24. Sheet-metal forming.
1. Characteristics of metal forming 2. Important metal forming processes 3. FEM-analysis of metal forming 4. Theory 5. Reduction and proportion of plastic zone 6. Deformations from velocity fields 7. Technological tests and physical simulation 8. Flow stress data 9. Formability and workability 10. Friction and friction models 11. Thermal effects 12. Experimental metal flow analysis 13. Theoretical methods of analysis 14. Finite element analysis 15. FEM-analysis of technological tests 16. Forging 17. FEM-analysis of forging 18. Extrusion 19. FEM-analysis of extrusion 20. Rolling 21. FEM-analysis of rolling 22. Drawing of wire, profiles and tubes 23. FEM-analysis of wiredrawing 24. Sheet-metal forming.
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