Study of the effect of machining parameters and Analysis of the wear characteristics of an EDM by ANOVA’s Techniques
Keywords:
Electric discharge machining, Taguchi technique, L18 orthogonal array, AISI H11 die steel.Abstract
Electric discharge machining (EDM) is one of the maximum commonly used nontraditional processes for making accurate intricate shapes on hard materials like die steels and is most preferred process to be followed for die and mold making. In this research work, Experiment plan has been designed using Taguchi technique to study the effect of different parameters and their levels by conducting least number of experiments. Based on this L18 orthogonal array is been used. As the most popularly used material in die and mold casting industries are the die steels hence for this work AISI H11 die steel are used as the workpiece material for slot cutting. Effort has been made to find out the optimum machining conditions by varying process parameters like current, powder to be suspended in dielectric, its concentration, tool material and pulse-on duration at three levels with and without using external magnetic field. The results are analyzed using analysis of variance (ANOVA) both analytically and graphically. Significant factors affecting the output parameters have been found using F-test and percentage contribution. From the experimental investigation copper tool followed by C18000 tool has been found to give the best MRR results and high tool wear, whereas tungsten tool has been found to give the least MRR accompanied by least tool wear. The dimensional accuracy of the tools in terms of corner wear, side wear and overcut has also been studied.
References
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- Bhattacharya A., Batish A. (2011) Optimal Parameter Settings for Rough and Finish machining of die steels in powder- mixed EDM. International Journal of Advanced Manufacturing Technology, 011:3716
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