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Original Articles

Effect of deep cryotreated tungsten carbide electrode and SiC powder on EDM performance of AISI 304

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Pages 981-992 | Received 28 Aug 2017, Accepted 07 Jun 2018, Published online: 01 Oct 2018

References

  • Assarzadeh, S., and M. Ghoreishi. 2013. A dual response surface-desirability approach to process modeling and optimization of Al2O3 powder-mixed electrical discharge machining (PMEDM) parameters. The International Journal of Advanced Manufacturing Technology 64 (9–12):1459–77. doi:10.1007/s00170-012-4115-2.
  • Bhaumik, M., and K. P. Maity. 2016. Multi-response optimization by using the hybrid technique in electro discharge machining of AISI 304. International Journal of Engineering Research in Africa 26:68–75. doi:10.4028/www.scientific.net/JERA.26.68.
  • Bhaumik, M., and K. P. Maity. 2017. Effect of machining parameter on the surface roughness of AISI 304 in silicon carbide powder mixed EDM. Decision Science Letters 6:261–8.
  • Chow, H. M., L. D. Yang, C. T. Lin, and Y. F. Chen. 2008. The use of SiC powder in water as dielectric for micro-slit EDM machining. Journal of Materials Processing Technology 195 (1–3):160–70. doi:10.1016/j.jmatprotec.2007.04.130.
  • Erden, A., and S. Bilgin. 1980. Role of impurities in electric discharge machining. Proceedings of the 21st International Conference on Machine Tool Design and Research, Macmillan, London.
  • Gill, S. S., J. Singh, R. Singh, and H. Singh. 2012. Effect of cryogenic treatment on AISI M2 high speed steel: metallurgical and mechanical characterization. Journal of Materials Engineering and Performance 21 (7):1320–6. doi:10.1007/s11665-011-0032-z.
  • Gu, K., J. Wang, and Y. Zhou. 2014. Effect of cryogenic treatment on wear resistance of ti-6Al-4V alloy for biomedical applications. Journal of the Mechanical Behavior of Biomedical Materials 30:131–9. doi:10.1016/j.jmbbm.2013.11.003.
  • Habib, S. S. 2009. Study of the parameters in electrical discharge machining through response surface methodology approach. Applied Mathematical Modelling 33 (12):4397–407. doi:10.1016/j.apm.2009.03.021.
  • Hasçalık, A., and U. Çaydaş. 2007. Electrical discharge machining of titanium alloy (ti–6Al–4V). Applied Surface Science 253 (22):9007–16. doi:10.1016/j.apsusc.2007.05.031.
  • Jafferson, J. M., and P. Hariharan. 2013. Machining performance of cryogenically treated electrodes in microelectric discharge machining: a comparative experimental study. Materials and Manufacturing Processes 28 (4):397–402. doi:10.1080/10426914.2013.763955.
  • Jahan, M. P., Y. S. Wong, and M. Rahman. 2009. A study on the quality micro-hole machining of tungsten carbide by micro-EDM process using transistor and RC-type pulse generator. Journal of Material Processing Technology 209 (4):1706–16. doi:10.1016/j.jmatprotec.2008.04.029.
  • Kansal, H. K., S. Singh, and P. Kumar. 2005. Parametric optimization of powder mixed electrical discharge machining by response surface methodology. Journal of Materials Processing Technology 169 (3):427–36. doi:10.1016/j.jmatprotec.2005.03.028.
  • Kansal, H. K., S. Singh, and P. Kumar. 2007. Effect of silicon powder mixed EDM on machining rate of AISI D2 die steel. Journal of Manufacturing Processes 9 (1):13–22. doi:10.1016/S1526-6125(07)70104-4.
  • Karthikeyan, G., A. K. Garg, J. Ramkumar, and S. Dhamodaran. 2012. A microscopic investigation of machining behavior in ED-milling process. Journal of Manufacturing Processes 14 (3):297–306. doi:10.1016/j.jmapro.2012.01.003.
  • Kumar, A., S. Maheshwari, C. Sharma, and N. Beri. 2012. Machining efficiency evaluation of cryogenically treated copper electrode in additive mixed EDM. Materials and Manufacturing Processes 27 (10):1051–8. doi:10.1080/10426914.2011.654151.
  • Lee, L. C., L. C. Lim, V. Narayanan, and V. C. Venkatesh. 1988. Quantification of surface damage of tool steels after EDM. International Journal of Machinery Tools and Manufacture 28 (4):359–72. doi:10.1016/0890-6955(88)90050-8.
  • Montgomery, D. C. 2001. Design and analysis of experiments. 5th ed. New York, NY: John Wiley and Sons Inc.
  • Pandey, A., and S. Singh. 2010. Current research trends in variants of electrical discharge machining. A review. International Journal of Engineering Science and Technology 2 (6):2172–91.
  • Pandey, P. C., and S. T. Jilani. 1986. Plasma channel growth and the resolidified layer in EDM. Precision Engineering 8(2):104–10. doi:10.1016/0141-6359(86)90093-0.
  • Pecas, P., and E. Henriques. 2008. Effect of the powder concentration and dielectric flow in the surface morphology in electrical discharge machining with powder-mixed dielectric (PMD-EDM). The International Journal of Advanced Manufacturing Technology 37(11–12):1120–32. doi:10.1007/s00170-007-1061-5.
  • Pradhan, M. K., and C. K. Biswas. 2011. Effect of process parameters on surface roughness in EDM of tool steel by response surface methodology. International Journal of Precision Technology 2 (1):64–80. doi:10.1504/IJPTECH.2011.038110.
  • Rajagopal, S. P., V. Ganesh, A. V. Lanjewar, and M. R. Sankar. 2013. Past and current status of hybrid electric discharge machining (H-EDM) processes. International Journal of Advanced Materials Manufacturing and Characterization 3 (1):111–8. doi:10.11127/ijammc.2013.02.020.
  • Sidhom, H., F. Ghanem, T. Amadou, G. Gonzalez, and C. Braham. 2013. Effect of electro discharge machining (EDM) on the AISI316L SS white layer microstructure and corrosion resistance. The International Journal of Advanced Manufacturing Technology 65 (1–4):141–53. doi:10.1007/s00170-012-4156-6.
  • Singh, H., and A. Singh. 2012. Wear behavior of AISI D3 die steel using cryogenic treated copper and brass electrode in electric discharge machining. International Journal of Modern Engineering Research 2 (6):4462–4.
  • Singh, L. P., and J. Singh. 2011. Effects of cryogenic treatment on high speed steel tools. Journal of Engineering and Technology 1 (2):88–93. doi:10.4103/0976-8580.86640.
  • Srivastava, V., and P. M. Pandey. 2011. Study of the cryogenically cooled electrode shape in electrical discharge machining process. World Academy of Science, Engineering and Technology 5:2004–22.
  • Srivastava, V., and P. M. Pandey. 2012. Performance evaluation of electrical discharge machining (EDM) process using cryogenically cooled electrode. Materials and Manufacturing Processes 27 (6):683–8. doi:10.1080/10426914.2011.602790.
  • Srivastava, V., and P. M. Pandey. 2014. Statistical modeling and material removal mechanism of electrical discharge machining process with cryogenically cooled electrode, international conference on advances in manufacturing and materials engineering, AMME. Procedia Materials Science 5:2004–13. doi:10.1016/j.mspro.2014.07.533.
  • Talla, G., S. Gangopadhyay, and C. K. Biswas. 2016. Effect of powder-suspended dielectric on the EDM characteristics of inconel 625. Journal of Materials Engineering and Performance 25 (2):704–17. doi:10.1007/s11665-015-1835-0.
  • Zhao, W. S., Q. G. Meng, and Z. L. Wang. 2002. The application of research on powder mixed EDM in rough machining. Journal of Materials Processing Technology 129 (1–3):30–3. doi:10.1016/S0924-0136(02)00570-8.

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