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Title: | Surface Integrity Study Using Small Area EDM |
Authors: | Patel, Sanjay D. |
Keywords: | Mechanical 2008 Project Report 2008 Mechanical Project Report Project Report 08MME 08MME014 Electric Discharge Machine (EDM) Small Erosion Area (SEA) Material Removal Rate (MRR) Electrode Wear Ratio (EWR) Surface Roughness (SR) Response Surface Methodology (RSM) CAD/CAM CAD/CAM 2008 |
Issue Date: | 1-Jun-2010 |
Publisher: | Institute of Technology |
Series/Report no.: | 08MME014 |
Abstract: | Electro-Discharge Machining (EDM) nds widespread application in aerospace in- dustry, Micro Electro Mechanical Systems (MEMS), tool and mould industry. The machining technique now plays an indispensable role in the fabrication of wide va- riety of components. The Small Erosion Area (SEA) machining is one of the most problematic forms of EDM since the integrity of the EDM surface is degraded by the unstable arcing which always occurs during the machining process. The present study performs the small area Electro-Discharge Machining (EDM) pro- cess with a copper electrode of diameter 2 mm to establish the in uence of EDM parameters on various aspects of the surface integrity of AISI 52100 die steel. The eectiveness of EDM process is evaluated in terms of material removal rate, relative wear ratio and surface nish quality of the workpiece produced. The input parameters are current, pulse-on-time, pulse-o-time and gap. The development of a comprehensive mathematical model for correlating the interac- tive and higher order in uences of various electrical discharge machining parameters through Response Surface Methodology (RSM), utilizing relevant experimental data obtained by experimentation. The adequacy of the above models has been tested through the Analysis of Variance (ANOVA). The MRR, EWR and SR prediction model has been optimized using genetic algorithms. The genetic algorithm program gives maximum values of MRR, minimum values of EWR and SR and their respective optimal conditions. The EDMed surface morphology was examined with a Scanning Electron Microscope (SEM). |
URI: | http://hdl.handle.net/123456789/1535 |
Appears in Collections: | Dissertation, ME (CAD/CAM) |
Files in This Item:
File | Description | Size | Format | |
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08MME014.pdf | 08MME014 | 71.93 MB | Adobe PDF | ![]() View/Open |
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