Comparison of Multi-Criteria Decision Making Methods for Multi Optimization of GTAC Process Parameters

Authors

  • Rajeev Ranjan
    Affiliation

    Department of Mechanical Engineering, Dr. B.C. Roy Engineering College, 713206 Durgapur, West Bengal,India
    Department of Mechanical Engineering, National Institute of Technology, 800005 Patna, Bihar, India

  • Abhijit Saha
    Affiliation

    Department of Mechanical Engineering, Haldia Institute of Technology, 721657 Haldia, West Bengal, India

  • Anil Kumar Das
    Affiliation

    Department of Mechanical Engineering, National Institute of Technology, 800005 Patna, Bihar, India

https://doi.org/10.3311/PPme.19835

Abstract

A great deal of investigation on gas tungsten arc cladding (GTAC) is focused on the study of enhancements in the microstructure, mechanical and tribological features of the cladding. The selection of right process parameters is a critical issue for the researchers. Decision makers in the industries must analyze a wide variety of parameters based on a set of contradictory criteria. Several multi-criteria decision-making (MCDM) techniques are now available to add values in selection of these parameters. The application of the TOPSIS and MOORA techniques to identify the best configuration of processing parameters in the gas tungsten arc cladding (GTAC) process is investigated in this work. The best processing parameters set for the multiple performance attributes should be welding current: 70 amp, speed: 240, argon flow: 13 and standoff distance 3.5 (TOPSIS-PCA) and welding current: 50, speed: 300, argon flow: 13 and standoff distance 3.5 (MOORA-PCA).A comparison of MOORA-PCA and TOPSIS-PCA demonstrates the superiority of TOPSIS over MOORA technique. The prediction accuracy of the TOPSIS-PCA hybrid approach model is found better than MOORA-PCA technique.

Keywords:

GTAC, MCDM, TOPSIS, MOORA, PCA

Citation data from Crossref and Scopus

Published Online

2022-03-22

How to Cite

Ranjan, R., Saha, A., Kumar Das, A. “Comparison of Multi-Criteria Decision Making Methods for Multi Optimization of GTAC Process Parameters”, Periodica Polytechnica Mechanical Engineering, 66(2), pp. 166–174, 2022. https://doi.org/10.3311/PPme.19835

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Articles