
Analysis and Optimization of Sheet Metal Forming Processes
- 370 pages
- English
- ePUB (mobile friendly)
- Available on iOS & Android
Analysis and Optimization of Sheet Metal Forming Processes
About this book
Analysis and Optimization of Sheet Metal Forming Processes comprehensively covers sheet metal forming, from choosing materials, tools and the forming method to optimising the entire process through finite element analysis and computer-aided engineering.
Beginning with an introduction to sheet metal forming, the book provides a guide to the various techniques used within the industry. It provides a discussion of sheet metal properties relevant to forming processes, such as ductility, formability, and strength, and analyses how materials should be selected with factors including material properties, cost, and availability. Forming processes including shearing, bending, deep drawing, and stamping are also discussed, along with tools such as dies, punches, and moulds. Simulation and modelling are key to optimising the sheet metal forming process, including finite element analysis and computer-aided engineering. Other topics included are quality control, design, industry applications, and future trends.
The book will be of interest to students and professionals working in the field of sheet metal and metal forming, materials science, mechanical engineering, and metallurgy.
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Information
Table of contents
- Cover
- Half Title
- Title
- Copyright
- Dedication
- Contents
- Foreword
- Foreword
- Preface
- Acknowledgements
- Editors
- Contributors
- Chapter 1 Roll Forming in Sheet Metal Forming: Principles and Processes
- Chapter 2 A Systematic Review of the Rotary Piercing Process
- Chapter 3 Finite Element Analysis of the Metal Spinning Process
- Chapter 4 High-Energy Rate Forming
- Chapter 5 The Formability of Aluminium and Its Alloy Sheet Metals: A Review
- Chapter 6 Analysis of Deep Drawing Quality Steel Using Incremental Hole Flanging with Different Pre-Cut Hole Diameters
- Chapter 7 Applications of Incremental Sheet Forming
- Chapter 8 Finite Element Analysis of the Incremental Forming Process
- Chapter 9 The Incremental Sheet Forming of Light Alloys
- Chapter 10 Formability and Surface Integrity in Incremental Sheet Metal Forming
- Chapter 11 Optimizing Process Parameters in Novel SPIF to Reduce Excessive Thinning and Geometrical Inaccuracies for Aluminum Alloys
- Chapter 12 The Impacts of Generatrix Radius Variation and Temperature on Spifability in Warm Incremental Forming: A Comprehensive Study
- Chapter 13 Numeric Investigations to Improve the Final Sheet Thickness in the SPIF of DC04 Sheets
- Chapter 14 Hydroforming: State-of-the-Art Developments and Future Trends
- Chapter 15 Applying Adaptive and Arlequin Meshing to Tensile Testing and Metal Forming
- Chapter 16 Edge Formability in Sheet Metal Forming
- Chapter 17 Finite Element Analysis of AA6061/AA5754 Bimetallic Sheets by Constrained Groove Pressing
- Chapter 18 Fracture Formation Limits in Sheet Metal Forming
- Chapter 19 The Role of Lubrication in Sheet Metal Forming Processes
- Index