Experimental investigation of nanographene mixed in the copper electrodes for electrical discharge machining

Nanotechnology in electrode manufacturing is a new technique to enhance the machinability of materials that are difficult to machine using electrical discharge machining (EDM). Since the wear of electrodes in the EDM process usually has a high effect on the process performance, thus it is important...

Full description

Saved in:
Bibliographic Details
Main Authors: Osama Sabbar, Ali Khleif, Baraa Albaghdadi
Format: Article
Language:English
Published: Unviversity of Technology- Iraq 2024-12-01
Series:Engineering and Technology Journal
Subjects:
Online Access:https://etj.uotechnology.edu.iq/article_184218_268073c6dbdec229abde9b2017948eb1.pdf
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1846099688968683520
author Osama Sabbar
Ali Khleif
Baraa Albaghdadi
author_facet Osama Sabbar
Ali Khleif
Baraa Albaghdadi
author_sort Osama Sabbar
collection DOAJ
description Nanotechnology in electrode manufacturing is a new technique to enhance the machinability of materials that are difficult to machine using electrical discharge machining (EDM). Since the wear of electrodes in the EDM process usually has a high effect on the process performance, thus it is important to conduct a study to reduce the tool wear rate (TWR) and increase the Material removal rate (MRR). This study aims to improve the operation performance of nanomaterial graphene in the electrode industry. In this experimental work, single-layer nanographene with a concentration of (2%wt) was mixed into a copper matrix using the stir-casting method for machining AISI 1005 Carbon Steel. The parameters selected are discharge current Ip (20, 30, and 40 A), pulse on time Ton (100, 200, and 300 μs), and pulse off time Toff (100, 150, and 200 μs). All the experimental runs were conducted using Design Expert 13 software at three levels and ANOVA for the statistical study. The results of this study manifested that the EDM performance was significantly enhanced by utilizing the powder of nanographene and enhancement through the performance measures of TWR and MRR improved by 15.10% and 29.67%, respectively, and enhanced the economic efficiency of this technology through the improved mechanical and electrical properties. Finally, scanning electron microscopy (SEM) was used to examine the effect of nanographene on the machined surface quality. The surface obtained from the copper electrode elucidated more surface flaws compared to the electrode mixed with nanographene powder.
format Article
id doaj-art-e97c3495b3f04167a5b9972bb724e6c5
institution Kabale University
issn 1681-6900
2412-0758
language English
publishDate 2024-12-01
publisher Unviversity of Technology- Iraq
record_format Article
series Engineering and Technology Journal
spelling doaj-art-e97c3495b3f04167a5b9972bb724e6c52024-12-31T09:36:54ZengUnviversity of Technology- IraqEngineering and Technology Journal1681-69002412-07582024-12-0142121446145510.30684/etj.2024.150641.1766184218Experimental investigation of nanographene mixed in the copper electrodes for electrical discharge machiningOsama Sabbar0Ali Khleif1Baraa Albaghdadi2Production Engineering and Metallurgy Dept., University of Technology-Iraq, Alsina’a street, 10066 Baghdad, Iraq.Production Engineering and Metallurgy Dept., University of Technology-Iraq, Alsina’a street, 10066 Baghdad, Iraq.Production Engineering and Metallurgy Dept., University of Technology-Iraq, Alsina’a street, 10066 Baghdad, Iraq.Nanotechnology in electrode manufacturing is a new technique to enhance the machinability of materials that are difficult to machine using electrical discharge machining (EDM). Since the wear of electrodes in the EDM process usually has a high effect on the process performance, thus it is important to conduct a study to reduce the tool wear rate (TWR) and increase the Material removal rate (MRR). This study aims to improve the operation performance of nanomaterial graphene in the electrode industry. In this experimental work, single-layer nanographene with a concentration of (2%wt) was mixed into a copper matrix using the stir-casting method for machining AISI 1005 Carbon Steel. The parameters selected are discharge current Ip (20, 30, and 40 A), pulse on time Ton (100, 200, and 300 μs), and pulse off time Toff (100, 150, and 200 μs). All the experimental runs were conducted using Design Expert 13 software at three levels and ANOVA for the statistical study. The results of this study manifested that the EDM performance was significantly enhanced by utilizing the powder of nanographene and enhancement through the performance measures of TWR and MRR improved by 15.10% and 29.67%, respectively, and enhanced the economic efficiency of this technology through the improved mechanical and electrical properties. Finally, scanning electron microscopy (SEM) was used to examine the effect of nanographene on the machined surface quality. The surface obtained from the copper electrode elucidated more surface flaws compared to the electrode mixed with nanographene powder.https://etj.uotechnology.edu.iq/article_184218_268073c6dbdec229abde9b2017948eb1.pdfedmtwrmrrnanographene powderstir casting method
spellingShingle Osama Sabbar
Ali Khleif
Baraa Albaghdadi
Experimental investigation of nanographene mixed in the copper electrodes for electrical discharge machining
Engineering and Technology Journal
edm
twr
mrr
nanographene powder
stir casting method
title Experimental investigation of nanographene mixed in the copper electrodes for electrical discharge machining
title_full Experimental investigation of nanographene mixed in the copper electrodes for electrical discharge machining
title_fullStr Experimental investigation of nanographene mixed in the copper electrodes for electrical discharge machining
title_full_unstemmed Experimental investigation of nanographene mixed in the copper electrodes for electrical discharge machining
title_short Experimental investigation of nanographene mixed in the copper electrodes for electrical discharge machining
title_sort experimental investigation of nanographene mixed in the copper electrodes for electrical discharge machining
topic edm
twr
mrr
nanographene powder
stir casting method
url https://etj.uotechnology.edu.iq/article_184218_268073c6dbdec229abde9b2017948eb1.pdf
work_keys_str_mv AT osamasabbar experimentalinvestigationofnanographenemixedinthecopperelectrodesforelectricaldischargemachining
AT alikhleif experimentalinvestigationofnanographenemixedinthecopperelectrodesforelectricaldischargemachining
AT baraaalbaghdadi experimentalinvestigationofnanographenemixedinthecopperelectrodesforelectricaldischargemachining