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Parametric optimization of EDD using RSM-Grey-TLBO-based MCDM approach for commercially pure titanium

Neeraj Sharma, Neeraj Ahuja, Rachin Goyal, Vinod Rohilla

Grey Systems: Theory and Application

ISSN: 2043-9377

Article publication date: 8 April 2020

Issue publication date: 19 May 2020

180

Abstract

Purpose

Electric discharge drilling (EDD) is used to drill quality microholes on any conductive materials. EDD process parameters play a crucial role in the drilling. Depending upon the material characteristics, the cost of drilling also changes. Therefore, a suitable method is required to control the process parameters and drill quality microholes.

Design/methodology/approach

The input process parameters in the present work are peak current (Ip), pulse on-time (Ton) and pulse off-time (Toff). The trials were intended in accordance to central composite face-centered design of response surface methodology (RSM). The output responses, namely drilling rate (DR) and electrode wear ratio (EWR), were converted into a single response, that is, grade using Grey relational analysis (GRA). The grade value is further modeled by regression analysis. The empirical model was figured out using teaching–learning-based optimization (TLBO). The RSM-Grey-TLBO-based multicriteria decision-making (MCDM) is used to investigate the optimized process parameter setting.

Findings

The RSM-Grey-TLBO-based MCDM approach suggests that the optimized setting for DR and EWR is Ip: 3A; Ton: 40 µs; Toff: 42 µs. The percentage errors for the predicted and experimental results are 8.1 and 7.5% in DR and EWR, respectively.

Originality/value

The parametric optimization of EDD using RSM-Grey-TLBO-based MCDM approach while machining commercially pure titanium is still underway. Thus, this MCDM approach will give a path to the researchers working in this direction.

Keywords

Citation

Sharma, N., Ahuja, N., Goyal, R. and Rohilla, V. (2020), "Parametric optimization of EDD using RSM-Grey-TLBO-based MCDM approach for commercially pure titanium", Grey Systems: Theory and Application, Vol. 10 No. 2, pp. 231-245. https://doi.org/10.1108/GS-01-2020-0008

Publisher

:

Emerald Publishing Limited

Copyright © 2020, Emerald Publishing Limited

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