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Provides a comprehensive description for machining technologies of stainless steels and super alloys with consideration to current industrial applications.
Presents current and recent developments related to traditional and nontraditional machining techniques of stainless steels and super alloys
Arranges types of stainless steels and super alloys in qualitative and quantitative form, as related to their machining characteristics, providing the reader with information regarding optimum working condition for each material
Proposes a 10-level machinability chart to rank important grades of stainless steels
Arranges the machinability rating of the most commonly used super alloys in a descending order
Presents non-traditional machining processes along with some hybrid processes which have been applied successfully to stainless steels and super alloys
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7.4.1.1 Types of Generators, Applicable for ED ]Machines 165
7.4.1.2 Process Capabilities 165
7.4.2 Electron Beam Machining 166
7.4.3 Laser Beam Machining 168
7.4.4 Plasma Arc Cutting 172
7.5 Nontraditional Machining Processes an Outlook 173
References 177
8 Nontraditional Machining of Stainless Steels and Super Alloys 179
8.1 Mechanical Nontraditional Machining Processes of Stainless Steels and Super Alloys 179
8.1.1 Jet Machining 179
8.1.2 Ultrasonic Machining (USM) of Stainless Steels and Super Alloys 180
8.1.3 Abrasive Flow Machining of Stainless Steels and Super Alloys 181
8.2 Electrochemical and Chemical Machining Processes of Stainless Steels and Super Alloys 183
8.2.1 Electrochemical Machining 183
8.2.2 Shaped Tube Electrolytic Machining (STEM) of Stainless Steel and Super Alloys 194
8.2.3 Electro ]stream (ES) Machining of Stainless Steel and Super Alloys 196
8.2.4 Electrochemical Grinding (ECG) of Stainless Steels and Super Alloys 196
8.2.5 Chemical Milling (CH ]Milling) 196
8.2.5.1 MRR and Depth Tolerance 197
8.2.5.2 Surface Quality 198
8.2.6 Photochemical Machining (Spray Etching) 199
8.3 Thermoelectric Machining Processes 201
8.3.1 Electric Discharge Machining (EDM) 201
8.3.2 Electrical Discharge Milling of SSs and SAs 204
8.3.2.1 Fields of Applications of ED ]Milling 204
8.3.2.2 Advantages and Limitations of ED ]Milling 205
8.3.3 Electron Beam Machining 206
8.3.4 Laser Beam Machining 206
8.3.5 Plasma Arc Cutting 210
8.4 Economical Analysis of ECM and Thermo ]electrical Processes of Turbo ]machinery Components 211
8.5 Nontraditional Micro ]drilling of Deep Holes a Comparison 214
8.6 Thermally ]Assisted Machining of Stainless Steels and Super Alloys 214
8.6.1 Surface Integrity and Removal Rates for TAM of Stainless Steels and Super Alloys 215
8.6.2 Laser Assisted Turning (LAM) of Inconel ]718 216
8.6.3 Plasma Assisted Turning (PAT) of Super Alloys and PH ]Stainless Steel 217
References 218
9 Current and Recent Developments Regarding Machining of Stainless Steels and Super Alloys 221
9.1 General Considerations 221
9.2 Recent Research Work Related to Traditional Machining of Stainless Steels 222
9.3 Recent Research Works Related to Traditional Machining of Super Alloys 230
9.4 Recent Research Work Related to Nontraditional Machining of Stainless Steels and Super Alloys 242
References 245
Appendix 249
Review Questions 253
Index 265
Professor Helmi A. Youssef, born in August, 1938 in Alexandria, Egypt, has acquired his B.Sc. in Production Engineering, Alexandria University in 1960. He completed then his scientific building in Carolo–Welhelmina, TH Braunschweig in Germany, during the period 1961–1967, where he acquired his Dipl.–Ing., and Dr.–Ing. Degree in the domain of Non–traditional Machining. In Alexandria University, he has been promoted to associate, then since 1978 to full professor. In the period 1995–1998, professor Youssef was the chairman of the Production Engineering Dept., and since 1989, he was a member of the scientific committee for promotion of professors in Egyptian Universities. Between 1975 and 1998, he was a visiting professor in many Arab, and German Universities. He established his own laboratories, and supervised many M.Sc. and Ph D theses. Professor Youssef has organized and participated in international conferences. He has published many scientific papers in specialized journals, and authored books in his fields of specialization; two of which have been published by CRC, on machining and manufacturing technologies, in 2008, and 2011, respectively. Currently, Prof. Youssef is Emeritus Professor in PED, Alexandria University.