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Metal forming has been widely used in many industries. This traditional manufacturing process, however, has long been linked to many years of apprenticeship and skilled craftsmanship, and its conventional design and development paradigm appeared to involve more know-how and trial-and-error than in-depth scientific calculation, analysis and simulation. The design paradigm for forming processes and metal formed product development thus cannot meet the current demands for short development lead-times, low production costs and high product quality. With the advent of numerical simulation technologies, the design and development of forming processes and metal formed products are carried out with the aid of FEM simulation, allowing all the potential design spaces to be identified and evaluated, and the best design to ultimately be determined and implemented. Such a design and development paradigm aims at ensuring designing right the first time and reducing the need for trial-and-error in the workshop. This book provides postgraduates, manufacturing engineers and professionals in this field with an in-depth understanding of the design process and sufficient knowledge to support metal formed part design, forming process determination, tooling design, and product quality assurance and control via FEM simulation.
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Metal forming has been widely used in many industries. This traditional manufacturing process, however, has long been linked to many years of apprenticeship and skilled craftsmanship, and its conventional design and development paradigm appeared to involve more know-how and trial-and-error than in-depth scientific calculation, analysis and simulation. The design paradigm for forming processes and metal formed product development thus cannot meet the current demands for short development lead-times, low production costs and high product quality. With the advent of numerical simulation technologies, the design and development of forming processes and metal formed products are carried out with the aid of FEM simulation, allowing all the potential design spaces to be identified and evaluated, and the best design to ultimately be determined and implemented. Such a design and development paradigm aims at ensuring designing right the first time and reducing the need for trial-and-error in the workshop. This book provides postgraduates, manufacturing engineers and professionals in this field with an in-depth understanding of the design process and sufficient knowledge to support metal formed part design, forming process determination, tooling design, and product quality assurance and control via FEM simulation.
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Presents cutting-edge research on simulation-based metal formed product development
Complements concrete examples with extensive and informative illustrations, tables, and photographs
Provides real-life case studies
Includes supplementary material: [...]
Introduction.- Rigid Plastic Finite Element Method and FEM Simulation.- Evaluation of forming system design.- Die design and service life analysis.- Flow-induced defects in multi-scaled plastic deformation.- Ductile fracture and stress-induced defects in multi-scaled plastic deformation.
| Erscheinungsjahr: | 2018 |
|---|---|
| Fachbereich: | Fertigungstechnik |
| Genre: | Mathematik, Medizin, Naturwissenschaften, Technik |
| Rubrik: | Naturwissenschaften & Technik |
| Medium: | Taschenbuch |
| Reihe: | Engineering Materials and Processes |
| Inhalt: |
xv
246 S. 167 s/w Illustr. 246 p. 167 illus. |
| ISBN-13: | 9783319835266 |
| ISBN-10: | 3319835262 |
| Sprache: | Englisch |
| Einband: | Kartoniert / Broschiert |
| Autor: | Fu, Ming Wang |
| Auflage: | Softcover reprint of the original 1st edition 2017 |
| Hersteller: |
Springer
Palgrave Macmillan Springer International Publishing AG Engineering Materials and Processes |
| Verantwortliche Person für die EU: | Springer Verlag GmbH, Tiergartenstr. 17, D-69121 Heidelberg, juergen.hartmann@springer.com |
| Maße: | 235 x 155 x 15 mm |
| Von/Mit: | Ming Wang Fu |
| Erscheinungsdatum: | 29.06.2018 |
| Gewicht: | 0,406 kg |