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Optimization of welding parameters and microstructure and fracture mode characterization of GMA welding by using Taguchi method on SS304H austenitic steel

Autorzy
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This study is centre on optimizing different welding parameters which affect the weld-ability of SS304H, Taguchi technique was employed to optimize the welding parameters and fracture mode characterization was studied. A number of experiments have been conducted. L9 orthogonal array (3x3) applied for it. Analysis of variance (ANOVA) and signal to noise ratio (SNR), a statistical technique was applied to determine the effect of different welding parameters such as welding current, wire feed speed and gas flow rate on weldability of SS304H.Tensile strength, toughness, micro hardness and mode of fracture was examined to determine weldability of SS304H and it was observed from result that welding voltage have major impact whereas gas flow rate has minour impact on ultimate tensile strength of the welded joints and optimum process parameters were found to be 23 V, 350 IPM travel speed of wire and 15 l/min gas flow rate for tensile strength and mode of fracture was ductile fracture for tensile test specimen.
Rocznik
Strony
1121--1131
Opis fizyczny
Bibliogr. 22 poz., fot. kolor., rys., wykr.
Twórcy
autor
  • Mechanical Engineering Department, Indian Institute of Technology (BHU), Varanasi, India
autor
  • Mechanical Engineering Department, CCS University, Meerut, UP, India
Bibliografia
  • [1] Rizvi, S.A., Tewari, S.P., Wajahat, A.: A text book of Advanced Welding Technology, Kataria & Sons (P) Ltd., New Delhi 2009.
  • [2] Ghazvinlo, H.R., Honarbakhsh, A., Shadfar, N.: Effect of Arc Voltage, Welding Current and Welding Speed on Fatigue Life, Impact Energy and Bead Penetration of AA6061 joints Produced by robotic MIG Welding, Indian Journal of Science and Technology, 3(2), 2010.
  • [3] Ramazani, A., Mukherjee, K., Abdurakhmanov,A., Prahl, U., Schleser, M., Reisgen, U., Bleck, W.: Micromacro-characterization and modeling of mechanical properties of gas metal arc welded (GMAW) DP600 steel, Material Science&Engineering A, 589, 1-14, 2014.
  • [4] http://www.aperam.com/uploads/stainlesseurope/TechnicalDataSheet/FT%20aust%C3%A9nitiques/Anglais/304%20UK.pdf
  • [5] Dinesh, M.A., Vedansh, C., Jyoti, V.: Parametric Optimization of MIG process parameters using Taguchi and Grey Taguchi analysis, International Journal of Research in Engineering and Applied Sciences, 3(6), 1-17, 2015.
  • [6] Ghosh, N., Kumar Pal, P., Nandi, G.: Parametric Optimization of MIG Welding on 316L Austenitic Stainless Steel by Grey-Based Taguchi Method, Procedia Technology, 25, 1038-1048, 2016.
  • [7] Chauhan, V., Jadoun, R.S.: Parametric Optimization of MigWelding For Stainless Steel (SS-304) and Low Carbon Steel Using Taguchi Design Method, International Journal of Recent Scientific Research, 6(2), 2662-2666, 2015.
  • [8] Prakash, A., Kumar, B.R., Ohdar, P., Sankar, S.R.: Parametric Optimization of Metal Inert GasWelding By Using Taguchi Approach, IJRET, 5(2), 176-181, 2016.
  • [9] Bayazida, M., Farhangia, H., Ghahramani, A.: Investigation of friction stir welding parameters of 6063-7075 Aluminum alloys by Taguchi method, Procedia Materials Science, 11, 6-11, 2015.
  • [10] Datta, S., Bandyopadhyay, A., Kumar, P.: Grey-based Taguchi method for optimization of bead geometry in submerged arc bead-on-plate welding, International Journal of Advanced Manufacturing Technology, 39, 1136-1143, 2008.
  • [11] Kalita, D., Barua, P.B.: Taguchi Optimization of MIG Welding Parameters Affecting Tensile Strength of C20 Welds, IJETT, 26, 43-49, 2015.
  • [12] ASTM E8/E8M-11. Standard Test Methods for Tension Testing of Metallic Materials. ASM International; 2013.
  • [13] Chikhale, S.R., Kolhe, K.P. and Kumar, P.: Prediction of Mechanical properties of Al Alloy 6061-T6 by using GMAW, International Journal of Current Engineering and Technology, 5, 300-306, 2016.
  • [14] Rizvi, A.S., Tewari, S.P., Wajahat, A.: Application of Taguchi technique to optimize the Process Parameters of MIG Wedging on IS2062 Steel, International Journal on Emerging Trends in Mechanical & Production Engineering, 2(2), 1-11, 2016.
  • [15] Ganjigatti, P., Pratihar, D.K. and Roy Choudhury, A.: Modeling of the MIG welding process using statistical approaches, International Journal of Advanced Manufacturing Technology, 35, 1166-1190, 2008.
  • [16] Liu, B.X., Yin, F.X., Dai, X.L., He, J.N., Fang, W., Chena, C.X., Dong, Y.C.: The tensile behaviors and fracture characteristics of stainless steel clad plates with different interfacial status, Materials Science & Engineering A, 679, 172-182, 2017.
  • [17] Kumar, R.B., Chauhan, N., Raole, P.M., Natu, H.: Studies on mechanical properties, microstructure and fracture morphology details of laser beam welded thick SS304L plates for fusion reactor applications, Fusion Engineering and Design, 95, 34-43, 2015.
  • [18] Doddamani, S. and Kaleemulla, M.: Fracture toughness investigations of Al6061-Graphite particulate composite using compact specimens, Frattura ed Integrità Strutturale, 41, 484-490, 2017.
  • [19] Gryguc, A., Shaha, S.K., Jahed, H., Wells, M., Williams, B., McKinley, J.: Tensile and fatigue behaviour of as-forged AZ31B extrusion, Frattura ed Integrità Strutturale, 38, 251-258, 2016.
  • [20] Patil, C., Patil, H., Patil, H.: Experimental investigation of hardness of FSW and TIG joints of Aluminium alloys of AA7075 and AA6061, Frattura ed Integrità Strutturale, 37, 325-332, 2016.
  • [21] Singh, R., Rizvi, S.A., Tewari, S.P.: Effect of Friction Stir Welding on the Tensile Properties of AA6063 under Different Conditions, IJE Transactions A: Basics, 30(4), 597-603, April 2017.
  • [22] Rizvi, S.A., Tewari, S.P.: Optimization of Gas Metal Arc welding parameters of SS304 Austenatic Steel by Taguchi-Grey relational analysis, Journal of Computational and Applied Research in Mechanical Engineering, accepted for publishing in 8, 2018.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-6ef19ae9-9f76-4af7-ac16-ba943191a53c
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