Technology Of Metal Forming Processes

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Product Specifications

Publisher PHI Learning All Mechanical Engineering books by PHI Learning
ISBN 9788120334250
Author: Surender Kumar
Number of Pages 373
Available in all digital devices
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This comprehensive text presents the subject of metalworking by offering a clear account of the theory and applications of metal forming processes relevant to engineering practice. It is designed to serve as a textbook for undergraduate and postgraduate students of mechanical engineering, production engineering, industrial engineering, and metallurgical engineering.

The first seven chapters are devoted to basic concepts to equip the students with the background material on mechanics, material sciences and to provide them with a sound foundation in the theory of plasticity. In addition, the importance of friction and lubrication in metal forming processes is adequately highlighted. In the next nine chapters the reader is exposed to a richly detailed discussion of specific forming processes (including the lubricated metal forming processes) and new and powerful techniques are presented (load bounding and slip line field) for solving engineering problems in metal forming. The book then moves on to forming of polymers and also covers metal powder preforms, highlighting recent developments.

In the concluding portions of the book, the important factors such as force, power requirements, formability and machinability in the study of individual processes, are briefly discussed. Finally, the application of computer-aided analysis in the metalworking processes has been demonstrated, being the demand in this competitive scenario. Several chapter-end exercises are included to aid better understanding of the theory.


Preface • Nomenclature
1. Introduction
2. State of Stress
3. Strain and Strain Rates
4. Stress–Strain and Stress–Strain Rate Laws
5. Yield Criteria and Flow Rules
6. Friction in Metalworking
7. Lubrication Mechanism and Metalworking Lubricants
8. Drawing and Extrusion of Cylindrical Bodies
9. Drawing and Extrusion in Plane Strain
10. Deep Drawing
11. Strip Rolling
12. Forging
13. Bending and Forming
14. Slip Line Field Technique
15. Load Bounding Technique
16. Lubricated Metalworking Processes
17. Cold Processing of Polymers
18. Processing of Metal Powder Preforms
19. High Energy Rate Forming
20. Advances in Material Processing
21. Computer Application in Metalworking
Appendix A Comparison of Various Methods of Analysis of Forming Load
Appendix B Derivation of Reynolds Equation for Power Law Fluids
Appendix C Useful Tables
Appendix D Stress–Strain Curves for Various Materials
References/Bibliography • Index



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