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Multi-response optimization of EDM parameters using grey relational analysis (GRA) for Ti-5Al-2.5Sn titanium alloy

Munmun Bhaumik (Department of Mechanical Engineering, Vignan's Institute of Engineering for Women, Visakhapatnam, India and Department of Mechanical Engineering, National Institute of Technology Rourkela, Rourkela, India)
Kalipada Maity (Department of Mechanical Engineering, National Institute of Technology Rourkela, Rourkela, India)

World Journal of Engineering

ISSN: 1708-5284

Article publication date: 25 October 2020

Issue publication date: 7 January 2021

103

Abstract

Purpose

In this research, electro discharge machining (EDM) of Ti-5Al-2.5Sn titanium alloy is performed taking gap voltage, pulse on time, peak current and duty cycle as process parameters. The purpose of this paper is to find out the optimal process parameters setting for getting higher machining efficiency.

Design/methodology/approach

For experimental design, a face-centered central composite design (FCCCD)-based response surface methodology (RSM) is used. Multi-objective optimization like grey relational analysis (GRA) is adopted to achieve the higher machining efficiency by means of lower radial overcut (ROC), surface roughness (Ra), tool wear rate (TWR) and higher material removal rate (MRR). For the statistical study, analysis of variance (ANOVA) has been carried out.

Findings

The result shows that gap voltage, peak current and pulse on time are the most efficient parameters for the responses. An optimal parameter setting has been obtained for achieving higher machining efficiency. For validation of the study, confirmation experiment has been performed at optimal parameters setting.

Originality/value

Optimum parameter level for higher machining performance of Ti-5Al-2.5Sn Titanium alloy has been achieved machined by copper electrode during EDM operation.

Keywords

Citation

Bhaumik, M. and Maity, K. (2021), "Multi-response optimization of EDM parameters using grey relational analysis (GRA) for Ti-5Al-2.5Sn titanium alloy", World Journal of Engineering, Vol. 18 No. 1, pp. 50-57. https://doi.org/10.1108/WJE-06-2020-0210

Publisher

:

Emerald Publishing Limited

Copyright © 2020, Emerald Publishing Limited

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