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OCTOBER 19-20, 2012 - YMCA University of Science & Technology

OCTOBER 19-20, 2012 - YMCA University of Science & Technology

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Proceedings <strong>of</strong> the National Conference on<br />

Trends and Advances in Mechanical Engineering,<br />

<strong>YMCA</strong> <strong>University</strong> <strong>of</strong> <strong>Science</strong> & <strong>Technology</strong>, Faridabad, Haryana, Oct <strong>19</strong>-<strong>20</strong>, <strong>20</strong>12<br />

10. T. Sato, T. Mizutani, K. Yonemouchi and K. Kawata, The development <strong>of</strong> an electro discharge machine for<br />

micro hole boring, Precision Engineering, 8:163-168, <strong>19</strong>86.<br />

11. T.B. Thoe, D.K. Aspinwall, M.L.H. Wise and I.A. Oxley, Polycrystalline diamond edge quality and surface<br />

integrity <strong>of</strong> electrical discharge grinding, Journal <strong>of</strong> Materials Processing <strong>Technology</strong>, 56:773-785, <strong>19</strong>96.<br />

12. H.R. Shih and K.M. Shu, A study <strong>of</strong> electrical discharge grinding using a rotary disk electrode, International<br />

Journal <strong>of</strong> Advanced Manufacturing <strong>Technology</strong>, 38:59-67, <strong>20</strong>08.<br />

13. J.S. Soni and G. Chakraverti, Machining characteristics <strong>of</strong> titanium with rotary electro-discharge machining,<br />

Wear, 171:51-58, <strong>19</strong>94.<br />

14. Y.H Guu and H. Hocheng, Effects <strong>of</strong> workpiece rotation on machinability during electrical discharge<br />

machining, Materials and Manufacturing Processes, 16:91-101, <strong>20</strong>01.<br />

15. P. Koshy, V.K. Jain and G.K. Lal, Experimental investigations into electrical discharge machining with a<br />

rotating disk electrode, Precision Engineering, 15:6-15, <strong>19</strong>93.<br />

16. H.M. Chow, B.H. Yan and F.Y. Huang, Micro slit machining using electro-discharge machining with a<br />

modified rotary disk electrode (RDE), Journal <strong>of</strong> Materials Processing <strong>Technology</strong>, 91:161-166, <strong>19</strong>99.<br />

17. J. Atkinson and A. Ghoreishi, Comparative experimental study <strong>of</strong> machining characteristics in vibratory,<br />

rotary and vibro-rotary electro-discharge machining, International Journal <strong>of</strong> Material processing<br />

<strong>Technology</strong>, 1<strong>20</strong>:374-384, <strong>20</strong>02.<br />

18. R. Fujun, H. Dechen and W. Dianjun, Analysis <strong>of</strong> motion laws <strong>of</strong> machining non-sphere by EDM with<br />

rotary electrode, Journal <strong>of</strong> Materials Processing <strong>Technology</strong>, 149:323-327, <strong>20</strong>04.<br />

<strong>19</strong>. N.P. Hung, I.J. Yang and K.W. Leong, Electrical discharge machining <strong>of</strong> cast metal matrix composites,<br />

Journal <strong>of</strong> Material Processing <strong>Technology</strong>, 44:229-236, <strong>19</strong>94.<br />

<strong>20</strong>. M. Ramulu, P.N. Rao and H. Kao, Drilling <strong>of</strong> (Al 2 O 3 ) p /6061 metal matrix composites, Journal <strong>of</strong> Material<br />

Processing <strong>Technology</strong>, 124:244-154, <strong>20</strong>02.<br />

21. B.H. Yan and C.C. Wang, The machining characteristics <strong>of</strong> Al2O 3 /6061Al composite using rotary electrodischarge<br />

machining with a tube electrode, Journal <strong>of</strong> Materials Processing <strong>Technology</strong>, 95:222-231, <strong>19</strong>99.<br />

22. C.C. Wang and B.H. Yan, Blind-hole drilling <strong>of</strong> Al2O 3 /6061Al composite using rotary electro-discharge<br />

machining, Journal <strong>of</strong> Materials Processing <strong>Technology</strong>, 102:90-102, <strong>20</strong>00.<br />

23. B. Mohan, A. Rajadurai and K.G. Satynarayana, Effect <strong>of</strong> SiC and rotation <strong>of</strong> electrode on electric discharge<br />

machining <strong>of</strong> Al-SiC composite, Journal <strong>of</strong> Material Processing <strong>Technology</strong>, 124:297-304, <strong>20</strong>02.<br />

24. B. Lauwers, J. P. Kruth and K. Brans, Development <strong>of</strong> technology and strategies for the machining <strong>of</strong><br />

ceramic components by sinking and milling EDM, Annals <strong>of</strong> the CIRP, 56:225-228, <strong>20</strong>07.<br />

25. Y.H. Liu, X.P. Li, R.J. Ji, L.L. Yu, H.F. Zhang and Q.Y. Li, Effect <strong>of</strong> technological parameter on the<br />

process performance for electric discharge milling <strong>of</strong> insulating Al2O3 ceramic, Journal <strong>of</strong> Materials<br />

Processing <strong>Technology</strong>, <strong>20</strong>8:245-250, <strong>20</strong>08.<br />

26. Y.H. Liu, R.J. Ji, X.P. Li, L.L. Yu, H.F. Zhang and Q.Y. Li, Effect <strong>of</strong> machining fluid on the process<br />

performance <strong>of</strong> electric discharge milling <strong>of</strong> insulating Al 2 O 3 ceramic International Journal <strong>of</strong> Machine<br />

Tools and Manufacture, 48:1030-1035, <strong>20</strong>08.<br />

27. Y Liu, R. Ji, Q. Li, L. Yu and X. Li, Electric discharge milling <strong>of</strong> silicon carbide ceramic with high electrical<br />

resistivity, International Journal <strong>of</strong> Machine Tools and Manufacture, 48:1504-1508, <strong>20</strong>08.<br />

28. R.J Ji, Y.H Liu, L.Yu, X.P. Li and X. Dong, Study on high efficient electric discharge milling <strong>of</strong> silicon<br />

carbide ceramic with high resistivity, Chinese <strong>Science</strong> Bulletin, 53:3247-3254, <strong>20</strong>08.<br />

29. R.J. Ji, Y.H. Liu, Y. Zhang and F. Wang, Machining performance <strong>of</strong> silicon carbide ceramic in end electric<br />

discharge milling, International Journal <strong>of</strong> Refractory Metals and Hard Materials, 29:117-122, <strong>20</strong>11.<br />

30. Anonymous, Top-quality syndite PCD edge with EDG, Industrial Diamond, Review, 54: 80-83, <strong>19</strong>94.<br />

31. K.P. Rajurkar, B. Wei, J. Kozak and S.R. Nooka, Abrasive electro-discharge grinding <strong>of</strong> advanced materials,<br />

Proceeding <strong>of</strong> the 11 th International Symposium <strong>of</strong> Electro-machining (ISEM-11), Lausanne, Switzerland,<br />

pp. 863-870, <strong>19</strong>95.<br />

32. J. Kozak, Abrasive Electrodischarge grinding (AEDG) <strong>of</strong> advanced materials, Archives <strong>of</strong> Civil and<br />

Mechanical Engineering, 2:83-101, <strong>20</strong>02.<br />

33. T. Aoyama, I. Inasaki, Hybrid machining-combination <strong>of</strong> electrical discharge machining and grinding,<br />

Proceeding <strong>of</strong> the 14 th North American Manufacturing and Research Conference, SME, pp. 654-661, <strong>19</strong>86.<br />

34. R. Ji, Y. Liu, Y. Zhang, B. Cai and R. Shen, Electric discharge milling and mechanical grinding compound<br />

machining <strong>of</strong> silicon carbide ceramic, Material <strong>Science</strong> and <strong>Technology</strong>, 14:502-521, <strong>20</strong>10.<br />

35. P. Koshy, V.K. Jain and G.K. Lal, Mechanism <strong>of</strong> material removal in electrical discharge diamond grinding,<br />

International Journal <strong>of</strong> Machine Tools and Manufacturer, 36:1173-1185, <strong>19</strong>96.<br />

36. P. Koshy, V.K. Jain and G.K. Lal, Grinding <strong>of</strong> cemented carbide with electrical spark assistance, Journal <strong>of</strong><br />

Materials Processing <strong>Technology</strong>, 72:61-68, <strong>19</strong>97.<br />

37. S.K. Choudhury, V.K. Jain and M. Gupta, Electrical discharge diamond grinding <strong>of</strong> high speed steel,<br />

Machining <strong>Science</strong> and <strong>Technology</strong>, 3:91-105, <strong>19</strong>99.<br />

596

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