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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 />

38. V.K. Jain and R.G. Mote, On the temperature and specific energy during electrodischarge diamond grinding<br />

(EDDG), International Journal <strong>of</strong> Advanced Manufacturing <strong>Technology</strong>, 26:56-67, <strong>20</strong>05.<br />

39. S.K.S. Yadav, V. Yadava, V.L. Narayana, Experimental study and parameter design <strong>of</strong> electro-discharge<br />

diamond grinding, International Journal <strong>of</strong> Advanced Manufacturing <strong>Technology</strong>, 36:34-42, <strong>20</strong>08.<br />

40. S.K.S. Yadav, and V. Yadava, Neural network modeling and multi objective optimization <strong>of</strong> electrical<br />

discharge diamond cut-<strong>of</strong>f grinding (EDDCG), International Journal <strong>of</strong> Abrasive <strong>Technology</strong>, 4:346-362,<br />

<strong>20</strong>11.<br />

41. S.K.S. Yadav, and V. Yadava, Simultaneous optimization <strong>of</strong> multiple quality characteristics in electrical<br />

discharge diamond cut-<strong>of</strong>f grinding (EDDCG),” Applied Mechanics and Materials, 110-116:250-257, <strong>20</strong>12.<br />

42. S.K.S. Yadav and Vinod Yadav, Artificial neural network modeling <strong>of</strong> electrical discharge diamond cut-<strong>of</strong>f<br />

grinding (EDDCG), Proceeding <strong>of</strong> the 3 rd International and 24 th AIMTDR Conference, Vishakhapatnam,<br />

pp.271-275, <strong>20</strong>10.<br />

43. S.K.S. Yadav and V. Yadava, Multi-objective optimization <strong>of</strong> electrical discharge diamond cut-<strong>of</strong>f grinding<br />

(EDDCG) using Taguchi method, International Journal <strong>of</strong> Manufacturing <strong>Technology</strong> and Industrial<br />

Engineering, 1:<strong>19</strong>3-<strong>19</strong>8, <strong>20</strong>10.<br />

44. G.K. Singh, V. Yadava, R. Kumar, Diamond face grinding <strong>of</strong> WC-Co composite with spark assistance:<br />

experimental study and parameter optimization, International Journal <strong>of</strong> Precision Engineering and<br />

Manufacturing, 11:509-511, <strong>20</strong>10.<br />

45. G.K. Singh, V. Yadava, R. Kumar, Robust parameter design and multi-objective optimization <strong>of</strong> electrodischarge<br />

diamond face grinding <strong>of</strong> HSS, Proceeding in the 36 th International MATADOR Conference, pp.<br />

429-433, <strong>20</strong>11<br />

46. G.K. Singh, V. Yadava, R. Kumar, Multiresponse optimization <strong>of</strong> electro-discharge diamond face grinding<br />

process using robust design <strong>of</strong> experiments, Materials and Manufacturing Processes, 25: 1–6, <strong>20</strong>10<br />

47. G.K. Singh, V. Yadava, R. Kumar, Study <strong>of</strong> the parameters in electro-discharge diamond face grinding<br />

through response surface methodology approach, 2 nd International Conference on Mechanical, Industrial,<br />

and manufacturing Technologies (MIMT-<strong>20</strong>11), Singapore, pp. 637-642, <strong>20</strong>11.<br />

48. G.K. Singh, V. Yadava, R. Kumar, Experimental study and parameter optimization <strong>of</strong> electro-discharge<br />

diamond face grinding, International Journal <strong>of</strong> Abrasive <strong>Technology</strong>, 4:14-40, <strong>20</strong>11.<br />

49. S.S. Agrawal and V. Yadava, Artificial neural network modeling <strong>of</strong> electrical discharge diamond surface<br />

grinding (EDDSG), Proceeding <strong>of</strong> the 7 th International Conference on Precision, Meso, Micro and Nano<br />

Engineering Pune, pp.265-269, <strong>20</strong>11.<br />

50. S.S. Agarwal and Vinod Yadava, Artificial neural network modeling <strong>of</strong> electrical discharge diamond surface<br />

rd<br />

grinding (EDDSG) for Al-15wt.% SiCp metal matrix composite, Proceeding <strong>of</strong> the 3 National Conference<br />

on Advances in Manufacturing <strong>Technology</strong>, Chandigarh, pp. 268-273,<strong>20</strong>12.<br />

51. M. Modi and G. Agrawal, Design, development and experimental investigation <strong>of</strong> electro-discharge<br />

diamond surface grinding <strong>of</strong> Ti-6Al-4V, Advanced Material Research, 418-4<strong>20</strong>:1478-1481, <strong>20</strong>12.<br />

597

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