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Research Articles

Parametric modelling of a wire electrical discharge machining process using path analysis approach

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Pages 902-919 | Received 06 Apr 2021, Accepted 02 Oct 2021, Published online: 13 Oct 2021

References

  • Ho KH, Newman ST, Rahimifard S, et al. State of the art in wire electrical discharge machining (WEDM). Int J Mach Tools Manuf. 2004;44(12–13):1247–1259.
  • Singh Rana A, Joshi A, Chamoli S, et al. Optimization of WEDM process parameters for machining Al 2219 alloy. Mater Today Proc. 2020;26(2):2541–2545.
  • Patel JD, Maniya KD. A review on: wire cut electrical discharge machining process for metal matrix composite. Procedia Manuf. 2018;20:253–258.
  • Jahare MH, Idris MH, Hassim MH. Effect of WEDM parameters on material removal rate and kerf’s width of cobalt chromium molybdenum using full factorials design. Adv Mater Process Technol. 2020;1–14. DOI: 10.1080/2374068X.2020.1829949
  • Garg MP, Kumar A, Sahu CK. Mathematical modelling and analysis of WEDM machining parameters of nickel-based super alloy using response surface methodology. Sadhana. 2017;42(6):981–1005.
  • Nain SS, Garg D, Kumar S. Performance evaluation of the WEDM process of aeronautics super alloy. Mater Manuf Processes. 2018;33(16):1793–1808.
  • Das PP, Diyaley S, Chakraborty S, et al. Multi-objective optimization of wire electro discharge machining (WEDM) process parameters using grey-fuzzy approach. Period Polytech Mech Eng. 2019;63(1):16–25
  • Nain SS, Sai R, Sihag P, et al. Use of machine learning algorithm for the better prediction of SR peculiarities of WEDM of Nimonic-90 superalloy. Arch Mater Sci Eng. 2019;95(1):12–19.
  • Sahoo SK, Naik SS, Rana J. Optimisation of WEDM process parameters during machining of HCHCr steel using TOPSIS method. Int J Process Manage Benchmarking. 2019;9(2):216–231
  • Saravanan M, Thiyagarajan C, Somasundaram S. Parametric optimization of wirecut- electrical discharge machining through cuckoo search algorithm. Mater Today Proc. 2020;22(3):681–687.
  • Abhilash PM, Chakradhar D. ANFIS modelling of mean gap voltage variation to predict wire breakages during wire EDM of Inconel 718. CIRP J Manuf Sci Technol. 2020;31:153–164.
  • Chalisgaonkar R, Kumar J, Pant P. Prediction of machining characteristics of finish cut WEDM process for pure titanium using feed forward back propagation neural network. Mater Today Proc. 2020;25(4):592–601.
  • Mandal K, Sarkar S, Mitra S, et al. Parametric analysis and GRA approach in WEDM of Al 7075 alloy. Mater Today Proc. 2020;26(2):660–664.
  • Singh AK, Roy K, Das S, et al. WEDM investigation and fuzzy logic modelling of AA7075/SiC metal matrix composites. Mater Today Proc. 2020;26(2):1988–1994.
  • Devarasiddappa D, Chandrasekaran M, Arunachalam R. Experimental investigation and parametric optimization for minimizing surface roughness during WEDM of Ti6Al4V alloy using modified TLBO algorithm. J Braz Soc Mech Sci Eng. 2020;42:1–18.
  • Ishfaq K, Anwar S, Ali MA, et al. Optimization of WEDM for precise machining of novel developed Al6061-7.5% SiC squeeze-casted composite. Int J Adv Manuf Technol. 2020;111(7–8):2031–2049.
  • Majumder H, Maity K. Performance analysis in WEDM of titanium grade 6 through process capability index. World J Eng. 2020;17(1):144–151.
  • Mohapatra KD, Satpathy MP, Sahoo SK. Optimisation of WEDM parameters ina gear cutting process using MOORA-based GA. Int J Process Manage Benchmarking. 2020;10(1):99–131
  • Nawaz Y, Maqsood S, Naeem K, et al. Parametric optimization of material removal rate, surface roughness, and kerf width in high-speed wire electric discharge machining (HS-WEDM) of DC53 die steel. Int J Adv Manuf Technol. 2020;107(7–8):3231–3245.
  • Phate MR, Toney SB, Phate VR. Multi-parametric optimization of WEDM using artificial neural network (ANN)-based PCA for Al/SiCp MMC. J Inst Eng India. 2021;102(1):169–181.
  • Stage FK, Carter HC, Nora A. Path analysis: an introduction and analysis of a decade of research. J Educ Res. 2004;98(1):5–13
  • Hair JF, Black WC, Babin BJ, et al. Multivariate data analysis. New Jersey: Prentice- Hall; 2010.
  • Green SB. How many subjects does it take to do a regression analysis. Multivariate Behav Res. 1991;26(3):499–510.
  • Kline RB. Principles and practice of structural equation modelling. New York: The Guilford Press; 2011.
  • Snipes M, Taylor DC. Model selection and Akaike information criteria: an example from wine ratings and prices. Wine Econ Policy. 2014;3(1):3–9
  • Jatti VS. Multi-characteristics optimization in EDM of NiTi alloy, NiCu alloy and BeCu alloy using Taguchi’s approach and utility concept. Alexandria Eng J. 2018;57(4):2807–2817.
  • Gaikwad V, Jatti VS. Optimization of material removal rate during electrical discharge machining of cryo-treated NiTi alloys using Taguchi’s method. J King Saud Univ Eng Sci. 2018;30(3):266–272.
  • Kim H-Y. Statistical notes for clinical researchers: assessing normal distribution (2) using skewness and kurtosis. Restor Dent Endod. 2013;38(1):52–54.
  • Bollen KA, Curran PJ. Latent curve models: a structural equation perspective. New Jersey: John Wiley & Sons; 2006.
  • Sharma N, Khanna R, Gupta RD, et al. Modelling and multiresponse optimization on WEDM for HSLA by RSM. Int J Adv Manuf Technol. 2013;67(9–12):2269–2281.
  • Gaitonde VN, Manjaiah M, Maradi S, et al. Multiresponse optimization in wire electric discharge machining (WEDM) of HCHCr steel by integrating response surface methodology (RSM) with differential evolution (DE). In: Davim JP, editor. Woodhead publishing reviews: mechanical engineering series, computational methods and production engineering. 2017. p. 199–221. USA.
  • Bobbili R, Madhuand V, Gogia AK. An experimental investigation of wire electrical discharge machining of hotpressed boron carbide. Defence Technol. 2015;11(4):344–349.

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