Optimization of Machining Process on Coated Tungsten Carbide Electrode Tool and Titanium Alloy Workpiece Using EDM: A Critical Review

Author:

Singh Newton Kumar1,Rao P. Sudhakar1,Saidaiah Kalakonda1

Affiliation:

1. National Institute of Technical Teachers’ Training and Research (NITTTR)

Abstract

Commercial applications for Ti 6Al 4V, an alloy composed of titanium, aluminium, and vanadium, are possible. The features of titanium alloy include: Lightweight, non-magnetic, high melting point, outstanding fatigue strength, superior specific strength, great corrosion resistance, and biocompatibility. Reviewing the electro-discharge machining of titanium alloy (Ti 6Al 4V) as a workpiece, silicon carbide particle combined with EDM oil, and coated tungsten carbide electrode, this research examines this process. Dielectric fluid's impact on microhardness, surface finishing, TWR, and MRR. MRR is raised by silicon particles and coated tungsten carbide electrodes with EDM fluid. According to the study, the most important input parameters for determining TWR, MRR, surface finishing, and micro-hardness are voltage, current, pulse on time (Tonne), and pulse off time (Toff).

Publisher

Trans Tech Publications, Ltd.

Reference39 articles.

1. Analysis & Optimization of Parameters During EDM of Aluminium Metal Matrix Composite;Rizwee;Journal of University of Shanghai for Science and Technology,2021

2. Multi-objects optimization in µ-EDM using AlCrNi-coated tungsten carbide electrode for Ti-6AL-4 V;Huu;The International Journal of Advanced Manufacturing Technology,2022

3. Kunal, P. Sudhakar Rao, Mohd. Yunus Khan, K. Saidaiah (2022). A review of electrical discharge machining on various superalloy.

4. Experimental investigation and optimization of process parameters in EDM of aluminium metal matrix composites;Palanisamy;Materials Today: Proceedings

5. Panchal, V. A., Patel, R. K., Patel, B. A., & Patel, H. A. (2014). International Journal on Recent and Innovation Trends in Computing and Communication Effect of Process Parameters on Surface Quality and MRR in EDM of SS 440 C Using ANN.

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