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Multi objective optimization by application of Taguchi based Grey Relational Analysis for GMA welding of IS2062 structural steel

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Basic object of this research article was to investigate the parametric optimization of welding parameters such as arc voltage, wire feed speed and shielding gas flow rate for IS 2062 structural steel by integrating Taguchi method and Grey relational analysis. Experiments were conducted as per L16 (4xx3) orthogonal array. Design and Mechanical properties such tensile strength, Microhardness, toughness, and Microstructure of IS 2062 structural steel optimized by Grey-based Taguchi analysis were investigated, as they were selected as quality targets. Based on result of the grey relational analysis, a set of optimum welding parameters was obtained. The observed data from result have been interpreted, discussed and analyzed by integration of Grey-Taguchi methodology to optimize tensile strength, microhardness and percentage elongation.
Rocznik
Strony
717--729
Opis fizyczny
Bibliogr. 16 poz., fot. (w tym kolor.), wykr.
Twórcy
autor
  • Mechanical Engineering Department, Indian Institute of Technology (BHU), Varanasi, India
autor
  • Mechanical Engineering Department, Indian Institute of Technology (BHU), Varanasi, India
Bibliografia
  • [1] Brosilow, R.: Welding better with pulsed power, Weld Des Fabr, 5, 10, 57-69, 1984.
  • [2] Harvey, R. C.: Gas metal arc welding fume generation using pulsed current, Weld J., 74, 11, 59-68, 1995¿
  • [3] Rizvi, S. A., Tewari, S. P. and Ali, W.: Advanced Welding Technology, Kataria and Sons, Publishing Limited, New Delhi, 46, 2009.
  • [4] Srivastava, S. and Garg, R. K.: Process parameter optimization of gas metal arc welding on IS: 2062 mild steel using response surface methodology, Journal of Manufacturing Processes, 25, 296-305, 2017.
  • [5] Biswas, B. K., Kumar Pal, P. and Bandyopadhyay, A.: Optimization of Process Parameters for Flux Cored Arc Welding of Boiler Quality Steel Using Response Surface Methodology and Grey-Based Taguchi Methods, International Journal of Materials, Mechanics and Manufacturing, 4, 1, 8-16, 2016.
  • [6] Sathiya, P., Aravindan, S., Jeyapaul, R., Ajith, P. M. and Noorul Haq, A.: Optimizing the weld bead characteristics of super austenitic stainless steel (904L) through grey-based Taguchi method, Multidiscipline Modelling in Materials and Structures, 6, 2, 206-213, 2010.
  • [7] Murugan, N. and Parmar, R. S.: Effects of MIG process parameters on the geometry of the bead in the automatic surfacing of stainless steel, J. of Materials Processing Technology, 41, 381-398, 1994.
  • [8] Rizvi, S. A., Tewari, S. P. and Ali, W.: Application of Taguchi technique to optimize the Process Parameters of MIG Wedging on IS2062 Steel, International Journal on Emerging Trends in Mechanical and Production Engineering, 2, 2, 1-11, 2016.
  • [9] Sharma, S. K., Rizvi, S. A. and Kori, R. P.: Optimization of Process Parameters in Turning of AISI 8620 Steel Using Taguchi and Grey Taguchi Analysis, Int. Journal of Engineering Research and Applications, 4, 3, 6, 51-57, 2014.
  • [10] Deng, J. L.: Introduction to Grey system theory, J. Grey Syst. 1, 1-24, 1989.
  • [11] Gau, H. S., Hsieh, C. Y. and Liu, C. W.: Application of Grey correlation method to evaluate potential groundwater recharges sites, Stoch. Environ. Res. Risk Assess, 20, 407-421, 2006.
  • [12] Tzeng, C. J., Lin, Y. H., Yang, Y. K. and Jeng, N. C.: Optimization of turning operations with multiple performance characteristics using the Taguchi method and Grey relational analysis, Journal of materials processing technology, 2, 09, 2753-2759, 2009.
  • [13] You, M. L., Wang, C. W. and Yeh, C. K.: The development of completed Grey relational analysis toolbox via Matlab, J. Grey Syst., 9, 1, 57-64, 2007.
  • [14] Meng, L.: Grey system: theory, methods, applications and challenges, leverhume trust workshop on grey system and applications, Bucharest, Romania, 2015.
  • [15] Mukherjee, I. and Kumar, R. P.: A review of optimization techniques in metal cutting processes, Journal of Computers and Industrial Engineering, 50, 1-2, 15-34, 2006.
  • [16] Rizvi, S. A. and Tewari, S. P.: Effect of different Welding Parameters on the mechanical and microstructural properties of Stainless Steel 304H welded joints, International Journal of Engineering, TRANSACTIONS A: BASICS, 31, 8, 2017.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-569178f0-4be5-4d86-8dfb-1d65c6137a28
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