EXPERIMENTAL INVESTIGATION OF OPTIMAL ED MACHINING PARAMETERS FOR Ti-6Al-4V BIOMATERIAL

The present study investigates optimal parameters for machining of Ti-6Al-4V using EDM with graphite electrode. Herein, another technique of modifying surface properties and enhancing machining rate using electrical discharge machining (EDM) was developed. In the present study, design of experiment...

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Main Authors: Amandeep Singh Bhui, Gurpreet Singh, Sarabjeet Singh Sidhu, Preetkanwal Singh Bains
Format: Article
Language:English
Published: University of Niš 2018-12-01
Series:Facta Universitatis. Series: Mechanical Engineering
Online Access:http://casopisi.junis.ni.ac.rs/index.php/FUMechEng/article/view/4346
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spelling doaj-0da34ece7344448d86414e5ac8e0d5eb2020-11-25T02:38:15ZengUniversity of NišFacta Universitatis. Series: Mechanical Engineering0354-20252335-01642018-12-0116333734510.22190/FUME180824033B2086EXPERIMENTAL INVESTIGATION OF OPTIMAL ED MACHINING PARAMETERS FOR Ti-6Al-4V BIOMATERIALAmandeep Singh Bhui0Gurpreet Singh1Sarabjeet Singh Sidhu2Preetkanwal Singh Bains3Beant College of Engineering & Technology, Gurdaspur - 143521, Punjab, IndiaBeant College of Engineering & Technology, Gurdaspur - 143521, Punjab, IndiaBeant College of Engineering & Technology, Gurdaspur - 143521, Punjab, IndiaBeant College of Engineering & Technology, Gurdaspur - 143521, Punjab, IndiaThe present study investigates optimal parameters for machining of Ti-6Al-4V using EDM with graphite electrode. Herein, another technique of modifying surface properties and enhancing machining rate using electrical discharge machining (EDM) was developed. In the present study, design of experiment (D.O.E) was developed using the Taguchi’s orthogonal array to examine the effect of the input machining factors on the machining characteristics, and to forecast the optimized EDM parameters in terms of peak current, pulse-on time, pulse-off time and applied gap voltage. Each experiment was performed to obtain a hole of 1mm depth on the workpiece. From the results, it is found that the discharge current has significant influence on material removal rate (MRR) and surface roughness (SR) followed by other selected parameters, i.e. pulse-on time, pulse-off time. The MRR augmented steeply with the current and was recorded as maximum at 4 Amps. In-vitro bioactivity test was conducted in the simulated body fluid to examine bioactivity confirming a significant apatite growth on the surface treated with ED sparks. The surface and chemical alteration were analyzed by using Scanning Electron Microscopy (SEM) and X-Ray Diffraction (XRD) along with the identification of the substantially enhanced morphology for clinical success.http://casopisi.junis.ni.ac.rs/index.php/FUMechEng/article/view/4346
collection DOAJ
language English
format Article
sources DOAJ
author Amandeep Singh Bhui
Gurpreet Singh
Sarabjeet Singh Sidhu
Preetkanwal Singh Bains
spellingShingle Amandeep Singh Bhui
Gurpreet Singh
Sarabjeet Singh Sidhu
Preetkanwal Singh Bains
EXPERIMENTAL INVESTIGATION OF OPTIMAL ED MACHINING PARAMETERS FOR Ti-6Al-4V BIOMATERIAL
Facta Universitatis. Series: Mechanical Engineering
author_facet Amandeep Singh Bhui
Gurpreet Singh
Sarabjeet Singh Sidhu
Preetkanwal Singh Bains
author_sort Amandeep Singh Bhui
title EXPERIMENTAL INVESTIGATION OF OPTIMAL ED MACHINING PARAMETERS FOR Ti-6Al-4V BIOMATERIAL
title_short EXPERIMENTAL INVESTIGATION OF OPTIMAL ED MACHINING PARAMETERS FOR Ti-6Al-4V BIOMATERIAL
title_full EXPERIMENTAL INVESTIGATION OF OPTIMAL ED MACHINING PARAMETERS FOR Ti-6Al-4V BIOMATERIAL
title_fullStr EXPERIMENTAL INVESTIGATION OF OPTIMAL ED MACHINING PARAMETERS FOR Ti-6Al-4V BIOMATERIAL
title_full_unstemmed EXPERIMENTAL INVESTIGATION OF OPTIMAL ED MACHINING PARAMETERS FOR Ti-6Al-4V BIOMATERIAL
title_sort experimental investigation of optimal ed machining parameters for ti-6al-4v biomaterial
publisher University of Niš
series Facta Universitatis. Series: Mechanical Engineering
issn 0354-2025
2335-0164
publishDate 2018-12-01
description The present study investigates optimal parameters for machining of Ti-6Al-4V using EDM with graphite electrode. Herein, another technique of modifying surface properties and enhancing machining rate using electrical discharge machining (EDM) was developed. In the present study, design of experiment (D.O.E) was developed using the Taguchi’s orthogonal array to examine the effect of the input machining factors on the machining characteristics, and to forecast the optimized EDM parameters in terms of peak current, pulse-on time, pulse-off time and applied gap voltage. Each experiment was performed to obtain a hole of 1mm depth on the workpiece. From the results, it is found that the discharge current has significant influence on material removal rate (MRR) and surface roughness (SR) followed by other selected parameters, i.e. pulse-on time, pulse-off time. The MRR augmented steeply with the current and was recorded as maximum at 4 Amps. In-vitro bioactivity test was conducted in the simulated body fluid to examine bioactivity confirming a significant apatite growth on the surface treated with ED sparks. The surface and chemical alteration were analyzed by using Scanning Electron Microscopy (SEM) and X-Ray Diffraction (XRD) along with the identification of the substantially enhanced morphology for clinical success.
url http://casopisi.junis.ni.ac.rs/index.php/FUMechEng/article/view/4346
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