• Title of article

    Application of grey correlation-based EDAS method for parametric optimization of non-traditional machining processes

  • Author/Authors

    Das ، P. P. Department of Mechanical Engineering - Sikkim Manipal Institute of Technology - Sikkim Manipal University , Chakraborty ، S. Department of Production Engineering - Jadavpur University

  • From page
    864
  • To page
    882
  • Abstract
    Higher dimensional accuracy along with better surface finish of various advanced engineering materials has turned out to be the prime desideratum for the present day manufacturing industries. To achieve this, nontraditional machining (NTM) processes have become quite popular because of their ability to produce intricate shape geometries on diverse difficulttomachine materials. To allow these processes to operate at their fullest capability, it is often recommended to set their different input parameters at the optimal levels. Thus, in this paper, a new technique combining grey correlation method and evaluation based on distance from average solution is applied for simultaneous optimization of three NTM processes, i.e. photochemical machining process, laserassisted jet electrochemical machining process and abrasive water jet drilling process. The derived optimal parametric combinations outperform those as identified by the other popular multiobjective optimization techniques with respect to the considered response values. The results of analysis of variance also identify the most influencing parameters for the said NTM processes. Finally, the developed surface plots would help the process engineers in investigating the effects of different NTM process parameters on the corresponding grey appraisal scores.
  • Keywords
    Non , traditional machining process , Grey correlation , EDAS , Optimization , Process parameter , Response
  • Journal title
    Scientia Iranica(Transactions E: Industrial Engineering)
  • Journal title
    Scientia Iranica(Transactions E: Industrial Engineering)
  • Record number

    2714699