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Singh, N. Bharti, P.S. 2020. A review on micro electric discharge machining of titanium alloys. Materials Today: Proceedings, 25, pp.742-750.Search in Google Scholar
Inagaki, I., Takechi, T., Shirai, Y. Ariyasu, N. 2014. Application and features of titanium for the aerospace industry. Nippon steel & sumitomo metal technical report, 106(106), pp. 22-27.Search in Google Scholar
Pujari, S.R., Koona, R. Beela, S. 2018. Surface integrity of wire EDMed aluminum alloy: A comprehensive experimental investigation. Journal of King Saud University-Engineering Sciences, 30(4), pp. 368-376.Search in Google Scholar
Sakthivel, G., Saravanakumar, D. Muthuramalingam, T. 2018. Application of failure mode and effect analysis in manufacturing industry-an integrated approach with FAHP-fuzzy TOPSIS and FAHP-fuzzy VIKOR. International Journal of Productivity and Quality Management, 24(3), pp. 398-423.Search in Google Scholar
Schmid, S.R. Kalpakjian, S. 2014. Manufacturing engineering and technology. Pearson Prentice Hall.Search in Google Scholar
Pramanik, A., Basak, A.K., Littlefair, G., Debnath, S., Prakash, C., Singh, M.A., Marla, D. Singh, R.K. 2020. Methods and variables in Electrical discharge machining of titanium alloy – A review. Heliyon, 6(12), pp. 1-15.Search in Google Scholar
Qudeiri, J.E.A., Zaiout, A., Mourad, A.H.I., Abidi, M.H. Elka-seer, A. 2020. Principles and characteristics of different EDM processes in machining tool and die steels. Applied sciences, 10(6), p.2082.Search in Google Scholar
Asif, N., Saleem, M.Q. Farooq, M.U. 2023. Performance evaluation of surfactant mixed dielectric and process optimization for electrical discharge machining of titanium alloy Ti6Al4V. CIRP Journal of Manufacturing Science and Technology, 43, pp.42-56.Search in Google Scholar
Mahapatra, K.K., Biswal, S., Tripathy, S., Thatoi, D.N. Satapathy, P. 2022, August. Optimization of EDM Process Parameters in Machining of Titanium Alloy Used for Aerospace Applications. In International Conference on Recent Advances in Mechanical Engineering Research and Development. Singapore: Springer Nature Singapore, pp. 163-172.Search in Google Scholar
Thakur, A., Rao, P.S. Khan, M.Y. 2021. Study and optimization of surface roughness parameter during electrical discharge machining of titanium alloy (Ti-6246). Materials Today: Proceedings, 44, pp. 838-847.Search in Google Scholar
Nagaraju, N., Prakash, R.S., Kumar, G.V.A. Ujwala, N.G. 2020. Optimization of electrical discharge machining process parameters for 17-7 PH stainless steel by using taguchi technique. Materials Today: Proceedings, 24, pp.1541-1551.Search in Google Scholar
Ahmed, N., Ishfaq, K., Moiduddin, K., Ali, R. Al-Shammary, N. 2019. Machinability of titanium alloy through electric discharge machining. Materials and Manufacturing Processes, 34(1), pp. 93-102.Search in Google Scholar
Kalaiarasi, K., Senthilkumar, C., Balamurugan, M. Arokia-Dass, R. 2022. Micro-electrical discharge machining of Titanium alloy (Ti-6Al-4V) by Sawtooth pulse current. International Journal of Electrochemical Science, 17(4), p. 220442.Search in Google Scholar
Xie, B.C., Wang, Y.K., Wang, Z.L. Zhao, W.S. 2011. Numerical simulation of titanium alloy machining in electric discharge machining process. Transactions of Nonferrous Metals Society of China, 21, pp. s434-s439.Search in Google Scholar
Kumar, P.M., Sivakumar, K. Selvarajan, L. 2024. EDM machining effectiveness for Ti-6Al-4V alloy using Cu-TiB2 ceramic composite electrode: a parametric evaluation. Ceramics International, 50(11), pp. 20118-20132.Search in Google Scholar
Baroi, B.K. Patowari, P.K. 2022. Parametric study of electric discharge machining of titanium grade 2 alloy in distilled water. Materials Today: Proceedings, 59, pp. 1584-1590.Search in Google Scholar
Ishfaq, K. Waseem, M.U. 2023. Cutting performance evaluation of modified dielectrics in nano powder mixed electric discharge machining (NPMEDM) of Ni-based super alloy. CIRP Journal of Manufacturing Science and Technology, 41, pp. 196-215.Search in Google Scholar
Choudhary, R., Kumar, A., Yadav, G., Yadav, R., Kumar, V. Akhtar, J. 2020. Analysis of cryogenic tool wear during electrical discharge machining of titanium alloy grade 5. Materials Today: Proceedings, 26, pp. 864-870.Search in Google Scholar
Singh, N.K., Singh, Y. Sharma, A. 2021. Experimental investigation of flushing approaches on EDM machinability during machining of titanium alloy. Materials Today: Proceedings, 38, pp. 139-145.Search in Google Scholar
Gautam, N., Goyal, A. Sharma, S.S., Oza, A.D. Kumar, R. 2022. Study of various optimization techniques for electric discharge machining and electrochemical machining processes. Materials Today: Proceedings, 57, pp.615-621.Search in Google Scholar
Kumar, S. Gupta, T. 2023. A review of electrical discharge machining (EDM) and its optimization techniques. Materials Today: Proceedings.Search in Google Scholar
Kumar, R., Roy, S., Gunjan, P., Sahoo, A., Sarkar, D.D. Das, R.K. 2018. Analysis of MRR and surface roughness in machining Ti-6Al-4V ELI titanium alloy using EDM process. Procedia Manufacturing, 20, pp. 358-364.Search in Google Scholar
Rouniyar, A.K. Shandilya, P. 2018. Multi-Objective optimization using Taguchi and grey relational analysis on machining of Ti-6Al-4V alloy by powder mixed EDM process. Materials Today: Proceedings, 5(11), pp. 23779-23788.Search in Google Scholar
Panda, S.N., Pattanaik, A.K., Patel, A.K., Nayak, S., Patra, P. Bagal, D.K. 2023. Process parameter optimization for machining of Ti-6Al-4V using WASPAS and multi-objective genetic algorithm along with exponential trend line analysis. Materials Today: Proceedings.Search in Google Scholar
Gugulothu, B., Rao, G.K.M., Rao, D.H., Kumsa, D.K. Kassa, M.B. 2021. Experimental results on EDM of Ti-6Al-4V in drinking water with Graphite powder concentration. Materials Today: Proceedings, 46, pp. 234-242.Search in Google Scholar
Gugulothu, B., Rao, G.K.M. Bezabih, M. 2021. Grey relational analysis for multi-response optimization of process parameters in green electrical discharge machining of Ti-6Al-4V alloy. Materials Today: Proceedings, 46, pp. 89-98.Search in Google Scholar
Agarwal, N., Irshad, M., Singh, M.R. Singh, G. 2022. Optimization of material removal rate of Ti-6Al-4V using Rao-1 algorithm. Materials Today: Proceedings, 62, pp. 6722-6726.Search in Google Scholar
Phani, K.V.S., Mishra, S.B., Nayak, S.K., Satpathy, M.P., Das, D.K. Nanda, B.K. 2023. Multi objective optimization of EDM process parameters for HCHCr steel. Materials Today: Proceedings.Search in Google Scholar
Verma, V. Sahu, R. 2017. Process parameter optimization of die-sinking EDM on Titanium grade – V alloy (Ti-6Al-4V) using full factorial design approach. Materials today: proceedings, 4(2), pp. 1893-1899.Search in Google Scholar
Verma, V. Sajeevan, R. 2015. Multi process parameter optimization of diesinking EDM on titanium alloy (Ti6-Al4-V) using Taguchi approach. Materials Today: Proceedings, 2(4-5), pp. 2581-2587.Search in Google Scholar
Agarwal, N., Singh, M.R., Singh, G. Yadav, R. 2023. Optimization of EDM parameters using Ananya algorithm: A new advanced optimization technique. Materials Today: Proceedings.Search in Google Scholar
Bhowmick, S., Mondal, R., Sarkar, S., Biswas, N., De, J. Majumdar, G. 2023. Parametric optimization and prediction of MRR and surface roughness of titanium mixed EDM for Inconel 718 using RSM and fuzzy logic. CIRP Journal of Manufacturing Science and Technology, 40, pp. 10-28.Search in Google Scholar
Kumar, A., Vivekananda, K. Prasad, A.R. 2022. Experimental investigation and parametric optimization during EDM of Titanium grade 9 using MOORA-fuzzy integrated multi-objective Genetic algorithm. Materials Today: Proceedings, 62, pp. 4473-4479.Search in Google Scholar
Singh, S.K., Prabhakar, S., Rao, D.K. Khare, S.K. 2022. Optimization of Machining parameters in EDM of Ti6-Al-4V alloy using Taguchi Grey relational analysis Methodology. Materials Today: Proceedings, 59, pp. 1231-1235.Search in Google Scholar
Singh, R., Singh, R.P. Trehan, R. 2022. Machine learning algorithms based advanced optimization of EDM parameters: An experimental investigation into shape memory alloys. Sensors International, 3, pp. 100179.Search in Google Scholar
Dikshit, M.K., Singh, S., Pathak, V.K., Saxena, K.K., Agrawal, M.K., Malik, V., Hazim Salem, K. Khan, M.I. 2023. Surface characteristics optimization of biocompatible Ti6Al4V with RCCD and NSGA II using die sinking EDM. Journal of Materials Research and Technology, 24, pp. 223-235.Search in Google Scholar
Gangil, M. Pradhan, M.K. 2017. Modeling and optimization of electrical discharge machining process using RSM: A review. Materials Today: Proceedings, 4(2), pp. 1752-1761.Search in Google Scholar
Hasda, R.K. 2013. Optimization of EDM Process Parameters through Teaching Learning Based Optimization Algorithm (Master thesis).Search in Google Scholar
Singh, N.K., Singh, Y. Sharma, A. 2021. Experimental investigation of flushing approaches on EDM machinability during machining of titanium alloy. Materials Today: Proceedings, 38, pp. 139-145.Search in Google Scholar
Jayaraman, P., Mahesh, L. Senthil, V. 2015. Optimization of cutting parameters in turning of AA6351 using response surface methodology and genetic algorithm. IJAER, 10(23), pp. 43905-43911.Search in Google Scholar
Rudrapati, R., Sahoo, P. Bandyopadhyay, A. 2016, September. Optimization of process parameters in CNC turning of aluminium alloy using hybrid RSM cum TLBO approach. In IOP conference series: materials science and engineering, 149(1), pp. 012039.Search in Google Scholar
Enzi, A. Mynderse, J.A. 2017, November. Optimization of process parameters applied to a prototype selective laser sintering system. In ASME International Mechanical Engineering Congress and Exposition, (58356), p. V002T02A022.Search in Google Scholar
Myers, R.H., Montgomery, D.C. and Anderson-Cook, C.M. 2016. Response surface methodology: process and product optimization using designed experiments. John Wiley & Sons.Search in Google Scholar
Sathiyaraj, S., Prabhuraj, P. Sai, S. 2015. Investigation of machining characteristics of tungsten carbide by wire cut EDM process. J. Chem. Pharm. Sci. (9), pp. 65-71.Search in Google Scholar