Taguchi Metodu ve Gri İlişkisel Analizi Kullanılarak 1,2316 Paslanmaz Çeliğin (R65) Mikro-Elektro Erozyon Delme Kabiliyetinin Değerlendirilmesi

Bu çalışmada kalıp çeliği olarak kullanılan R65 paslanmaz çeliğin Mikro-Elektro Erozyon İşleme (Mikro-EDM) ile delinmesi incelenmiştir. Mikro-EDM işleminde Akım A (3, 4 ve 5 A), darbe süresi (Ton) (3, 4, ve 5 µs) ve Bekleme süresi (Toff) (2, 3, ve 4 µs) faktörlerinin delaminasyon faktörü (FdT ve FdB) ve Kerf açısına (Kº) etkisi araştırılmıştır. Deney düzeni Taguchi metodu L9 ortogonal dizilime göre yapılmıştır. Mikro-EDM işleminde sonuçlara çoklu faktörler etki ettiği için Gri İlişki Analizi (GRA) çoklu karakterizasyon yöntemi kullanılmıştır. En etkili faktörlerin belirlenmesi için ANOVA analiz yapılmıştır. Elde edilen sonuçlara göre en düşük kerf açısı, FdT ve FdB değerleri sırasıyla 0,267 (Kº) 24,259 µs ve 59,534 µs olarak tespit edilmiştir. Taguchi metoduyla tahmin edilen değerlerin %95 güven aralığında (CI) içinde olduğu görüldü. ANOVA analizine göre sonuçlara etki eden en önemli faktör %99,1 katkı oranı ile Akım olarak belirlenmiştir.

___

  • [1] M. P. Jahan, Y. San Wong, and M. Rahman, "A comparative experimental investigation of deep-hole micro-EDM drilling capability for cemented carbide (WC-Co) against austenitic stainless steel (SUS 304)," The International Journal of Advanced Manufacturing Technology, vol. 46, no. 9-12, pp. 1145-1160, 2010
  • [2] V. G. M. V. J. Hadfield and Z. M. E. EDM, "Deep micro-hole drilling for Hadfield steel by electro-discharge machining (EDM)," Materiali in tehnologije, vol. 49, no. 3, pp. 377-386, 2015
  • [3] P. C. Kaminski and M. N. Capuano, "Micro hole machining by conventional penetration electrical discharge machine," International Journal of Machine Tools and Manufacture, vol. 43, no. 11, pp. 1143-1149, 2003
  • [4] Z. Katz and C. Tibbles, "Analysis of micro-scale EDM process," The International Journal of Advanced Manufacturing Technology, vol. 25, no. 9-10, pp. 923-928, 2005
  • [5] Y.-Y. Tsai and T. Masuzawa, "An index to evaluate the wear resistance of the electrode in micro-EDM," Journal of Materials Processing Technology, vol. 149, no. 1, pp. 304-309, 2004
  • [6] A. K. Singh, P. K. Patowari, and M. Chandrasekaran, "Experimental study on drilling micro-hole through micro-EDM and optimization of multiple performance characteristics," Journal of the Brazilian Society of Mechanical Sciences and Engineering, vol. 42, no. 10, pp. 1-14, 2020
  • [7] N. M. Elsiti, M. Noordin, A. Idris, and F. S. Majeed, "Optimization of maghemite (γ-Fe2O3) nano-powder mixed micro-EDM of CoCrMo with multiple responses using gray relational analysis (GRA),"Journal of Physics: Conference Series, vol. 914, no. 1, pp. 1-9, 2017
  • [8] P. H. A. Kadirvel, "Optimization of the die-sinking micro-EDM process for multiple performance characteristics using the Taguchi-based grey relational analysis," Materiali in tehnologije, vol. 48, no. 1, pp. 27-32, 2014
  • [9] N. Natarajan and R. Arunachalam, "Optimization of micro-EDM with multiple performance characteristics using Taguchi method and Grey relational analysis," Optimization of micro-EDM with multiple performance characteristics using Taguchi method and Grey relational analysis, vol. 70, pp. 500-505, 2011
  • [10] M. Ay, U. Çaydaş, and A. Hasçalık, "Optimization of micro-EDM drilling of Inconel 718 superalloy," The International Journal of Advanced Manufacturing Technology, c. 66, s. 5-8, ss. 1015-1023, 2013
  • [11] A. Mohanty, G. Talla, and S. Gangopadhyay, "Experimental investigation and analysis of EDM characteristics of Inconel 825," Materials and Manufacturing Processes, c. 29, s. 5, ss. 540-549, 2014
  • [12] G.-L. Chern and Y. Chuang, "Study on vibration-EDM and mass punching of micro-holes," Journal of Materials Processing Technology, c. 180, s. 1, ss. 151-160, 2006
  • [13] T. Masuzawa, J. Tsukamoto, and M. Fujino, "Drilling of Deep Microholes by EDM," CIRP Annals, c. 38, s. 1, ss. 195-198, 1989
  • [14] B. H. Yan, F. Y. Huang, H. M. Chow, and J. Y. Tsai, "Micro-hole machining of carbide by electric discharge machining," Journal of Materials Processing Technology, c. 87, s. 1, ss. 139-145, 1999
  • [15] L. Tang and Y. F. Guo, "Electrical discharge precision machining parameters optimization investigation on S-03 special stainless steel," The International Journal of Advanced Manufacturing Technology, vol. 70, no. 5, pp. 1369-1376, 2014
  • [16] M. Sarıkaya and V. Yılmaz, "Optimization and predictive modeling using S/N, RSM, RA and ANNs for micro-electrical discharge drilling of AISI 304 stainless steel," Neural Computing and Applications, vol. 30, no. 5, pp. 1503-1517, 2018
  • [17] D. Wang, W. S. Zhao, L. Gu, and X. M. Kang, "A study on micro-hole machining of polycrystalline diamond by micro-electrical discharge machining," Journal of Materials Processing Technology, vol. 211, no. 1, pp. 3-11, 2011
  • [18] O. Erdem, C. Çoğun, L. Ürtekin, H. B. Özerkan, and İ. Uslan, "The effect of powder mixed and heated dielectric on drilling performance of electric discharge machining (EDM)," Journal of the Faculty of Engineering and Architecture of Gazi University, vol. 31, no. 3, pp. 531-544, 2016
  • [19] K. Maity and R. K. Singh, "An optimisation of micro-EDM operation for fabrication of micro-hole," The International Journal of Advanced Manufacturing Technology, vol. 61, no. 9-12, pp. 1221-1229, 2012
  • [20] S. Dong, Z. Wang, and Y. Wang, "Micro-EDM drilling of high aspect ratio micro-holes and in situ surface improvement in C17200 beryllium copper alloy," Journal of Alloys and Compounds, vol. 727, pp. 1157-1164, 2017
  • [21] A. Kadirvel, P. Hariharan, and S. Gowri, "Experimental investigation on the electrode specific performance in micro-EDM of die-steel," Materials and Manufacturing Processes, vol. 28, no. 4, pp. 390-396, 2013
  • [22] B. Pradhan, M. Masanta, B. Sarkar, and B. Bhattacharyya, "Investigation of electro-discharge micro-machining of titanium super alloy," The International Journal of Advanced Manufacturing Technology, vol. 41, no. 11-12, pp. 1094-1106, 2009
  • [23] S. Akıncıoğlu, H. Gökkaya, and İ. Uygur, "The effects of cryogenic-treated carbide tools on tool wear and surface roughness of turning of Hastelloy C22 based on Taguchi method," The International Journal of Advanced Manufacturing Technology, journal article vol. 82, no. 1, pp. 303-314, 2016
  • [24] E. Nas and S. Akıncıoğlu, "Kriyojenik işlem görmüş nikel esaslı süper alaşımın elektro-erozyon İşleme performansı optimizasyonu," Akademik Platform Mühendislik ve Fen Bilimleri Dergisi, c. 7, s. 1, ss. 115-126, 2019
  • [25] E. Yilmaz and F. Güngör, "Gri iliskisel analiz yöntemine göre farkli sertliklerde optimum takim tutucusunun belirlenmesi," in 2. Ulusal Tasarım İmalat ve Analiz Kongresi, Balıkesir, 2010, ss. 1-8
Düzce Üniversitesi Bilim ve Teknoloji Dergisi-Cover
  • Yayın Aralığı: Yılda 4 Sayı
  • Başlangıç: 2013
  • Yayıncı: Düzce Üniversitesi Fen Bilimleri Enstitüsü