Surface Characterization and Tribological Performance Analysis of Electric Discharge Machined Duplex Stainless Steel

The present article focused on the surface characterization of electric discharge machined duplex stainless steel (DSS-2205) alloy with three variants of electrode material (Graphite, Copper-Tungsten and Tungsten electrodes). Experimentation was executed as per Taguchi L18 orthogonal array to inspec...

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Main Authors: Timur Rizovich Ablyaz, Evgeny Sergeevich Shlykov, Karim Ravilevich Muratov, Amit Mahajan, Gurpreet Singh, Sandeep Devgan, Sarabjeet Singh Sidhu
Format: Article
Language:English
Published: MDPI AG 2020-10-01
Series:Micromachines
Subjects:
Online Access:https://www.mdpi.com/2072-666X/11/10/926
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spelling doaj-862d55729e4b45e2bee7dba92fec22b22020-11-25T03:35:33ZengMDPI AGMicromachines2072-666X2020-10-011192692610.3390/mi11100926Surface Characterization and Tribological Performance Analysis of Electric Discharge Machined Duplex Stainless SteelTimur Rizovich Ablyaz0Evgeny Sergeevich Shlykov1Karim Ravilevich Muratov2Amit Mahajan3Gurpreet Singh4Sandeep Devgan5Sarabjeet Singh Sidhu6Mechanical Engineering Faculty, Perm National Research Polytechnic University, Perm 614000, Russia;<email>kruspert@mail.ru</email> (E.S.S.)Mechanical Engineering Faculty, Perm National Research Polytechnic University, Perm 614000, Russia;<email>kruspert@mail.ru</email> (E.S.S.)Mechanical Engineering Faculty, Perm National Research Polytechnic University, Perm 614000, Russia;<email>kruspert@mail.ru</email> (E.S.S.)Mechanical Engineering Department, Khalsa College of Engineering and Technology, Amritsar 143001, IndiaMechanical Engineering Department, Beant College of Engineering and Technology, Gurdaspur 143521, IndiaMechanical Engineering Department, Khalsa College of Engineering and Technology, Amritsar 143001, IndiaMechanical Engineering Department, Beant College of Engineering and Technology, Gurdaspur 143521, IndiaThe present article focused on the surface characterization of electric discharge machined duplex stainless steel (DSS-2205) alloy with three variants of electrode material (Graphite, Copper-Tungsten and Tungsten electrodes). Experimentation was executed as per Taguchi L18 orthogonal array to inspect the influence of electric discharge machining (EDM) parameters on the material removal rate and surface roughness. The results revealed that the discharge current (contribution: 45.10%), dielectric medium (contribution: 18.24%) majorly affects the material removal rate, whereas electrode material (contribution: 38.72%), pulse-on-time (contribution: 26.11%) were the significant parameters affecting the surface roughness. The machined surface at high spark energy in EDM oil portrayed porosity, oxides formation, and intermetallic compounds. Moreover, a pin-on-disc wear analysis was executed and the machined surface exhibits 70% superior wear resistance compared to the un-machined sample. The surface thus produced also exhibited improved surface wettability responses. The outcomes depict that EDMed DSS alloy can be considered in the different biomedical and industrial applications.https://www.mdpi.com/2072-666X/11/10/926material processingDSS-2205 alloyelectric-discharge machiningsurface integritywear resistancesurface wettability
collection DOAJ
language English
format Article
sources DOAJ
author Timur Rizovich Ablyaz
Evgeny Sergeevich Shlykov
Karim Ravilevich Muratov
Amit Mahajan
Gurpreet Singh
Sandeep Devgan
Sarabjeet Singh Sidhu
spellingShingle Timur Rizovich Ablyaz
Evgeny Sergeevich Shlykov
Karim Ravilevich Muratov
Amit Mahajan
Gurpreet Singh
Sandeep Devgan
Sarabjeet Singh Sidhu
Surface Characterization and Tribological Performance Analysis of Electric Discharge Machined Duplex Stainless Steel
Micromachines
material processing
DSS-2205 alloy
electric-discharge machining
surface integrity
wear resistance
surface wettability
author_facet Timur Rizovich Ablyaz
Evgeny Sergeevich Shlykov
Karim Ravilevich Muratov
Amit Mahajan
Gurpreet Singh
Sandeep Devgan
Sarabjeet Singh Sidhu
author_sort Timur Rizovich Ablyaz
title Surface Characterization and Tribological Performance Analysis of Electric Discharge Machined Duplex Stainless Steel
title_short Surface Characterization and Tribological Performance Analysis of Electric Discharge Machined Duplex Stainless Steel
title_full Surface Characterization and Tribological Performance Analysis of Electric Discharge Machined Duplex Stainless Steel
title_fullStr Surface Characterization and Tribological Performance Analysis of Electric Discharge Machined Duplex Stainless Steel
title_full_unstemmed Surface Characterization and Tribological Performance Analysis of Electric Discharge Machined Duplex Stainless Steel
title_sort surface characterization and tribological performance analysis of electric discharge machined duplex stainless steel
publisher MDPI AG
series Micromachines
issn 2072-666X
publishDate 2020-10-01
description The present article focused on the surface characterization of electric discharge machined duplex stainless steel (DSS-2205) alloy with three variants of electrode material (Graphite, Copper-Tungsten and Tungsten electrodes). Experimentation was executed as per Taguchi L18 orthogonal array to inspect the influence of electric discharge machining (EDM) parameters on the material removal rate and surface roughness. The results revealed that the discharge current (contribution: 45.10%), dielectric medium (contribution: 18.24%) majorly affects the material removal rate, whereas electrode material (contribution: 38.72%), pulse-on-time (contribution: 26.11%) were the significant parameters affecting the surface roughness. The machined surface at high spark energy in EDM oil portrayed porosity, oxides formation, and intermetallic compounds. Moreover, a pin-on-disc wear analysis was executed and the machined surface exhibits 70% superior wear resistance compared to the un-machined sample. The surface thus produced also exhibited improved surface wettability responses. The outcomes depict that EDMed DSS alloy can be considered in the different biomedical and industrial applications.
topic material processing
DSS-2205 alloy
electric-discharge machining
surface integrity
wear resistance
surface wettability
url https://www.mdpi.com/2072-666X/11/10/926
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