Powder mixed micro electro discharge milling of titanium alloy: analysis of surface roughness
This paper presents effects of silicon carbide SiC powder concentration on micro EDM parameters on average surface roughness (Ra). The aim is to achieve minimum Ra value on titanium alloy (Ti-6Al-4V) machined with tungsten electrode for various level of concentration of SiC powder and discharge ener...
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Trans Tech Publications, Switzerland
2012
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iium-22512014-07-17T01:34:07Z http://irep.iium.edu.my/2251/ Powder mixed micro electro discharge milling of titanium alloy: analysis of surface roughness Ali, Mohammad Yeakub Adesta, Erry Yulian Triblas Abdul Rahman, Nur Atiqah Mohamad Aris, Erniyati TK Electrical engineering. Electronics Nuclear engineering This paper presents effects of silicon carbide SiC powder concentration on micro EDM parameters on average surface roughness (Ra). The aim is to achieve minimum Ra value on titanium alloy (Ti-6Al-4V) machined with tungsten electrode for various level of concentration of SiC powder and discharge energy (E). By using two-parameter and four-level factorial design of experiment sixteen experiments were conducted. The measured surface roughness values were analyzed with input parameters using by Design Expert software. The minimum Ra value obtained was 0.75 μm for 16.8 g/L SiC powder concentration and 57.8 μJ energy discharge. The analysis of variance revealed that powder concentration is the most influential parameter. Trans Tech Publications, Switzerland 2012 Article PeerReviewed application/pdf en http://irep.iium.edu.my/2251/1/Powder_Mixed_Micro_Electro_Discharge_Milling.pdf Ali, Mohammad Yeakub and Adesta, Erry Yulian Triblas and Abdul Rahman, Nur Atiqah and Mohamad Aris, Erniyati (2012) Powder mixed micro electro discharge milling of titanium alloy: analysis of surface roughness. Advanced Materials Research, 341/42. pp. 142-146. ISSN 1022-6680 http://www.scientific.net/AMR.341-342.142 |
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TK Electrical engineering. Electronics Nuclear engineering Ali, Mohammad Yeakub Adesta, Erry Yulian Triblas Abdul Rahman, Nur Atiqah Mohamad Aris, Erniyati Powder mixed micro electro discharge milling of titanium alloy: analysis of surface roughness |
description |
This paper presents effects of silicon carbide SiC powder concentration on micro EDM parameters on average surface roughness (Ra). The aim is to achieve minimum Ra value on titanium alloy (Ti-6Al-4V) machined with tungsten electrode for various level of concentration of SiC powder and discharge energy (E). By using two-parameter and four-level factorial design of experiment sixteen experiments were conducted. The measured surface roughness values were analyzed with input parameters using by Design Expert software. The minimum Ra value obtained was 0.75 μm for 16.8 g/L SiC powder concentration and 57.8 μJ energy discharge. The analysis of variance revealed that powder concentration is the most influential parameter. |
format |
Article |
author |
Ali, Mohammad Yeakub Adesta, Erry Yulian Triblas Abdul Rahman, Nur Atiqah Mohamad Aris, Erniyati |
author_facet |
Ali, Mohammad Yeakub Adesta, Erry Yulian Triblas Abdul Rahman, Nur Atiqah Mohamad Aris, Erniyati |
author_sort |
Ali, Mohammad Yeakub |
title |
Powder mixed micro electro discharge milling of titanium alloy: analysis of surface roughness |
title_short |
Powder mixed micro electro discharge milling of titanium alloy: analysis of surface roughness |
title_full |
Powder mixed micro electro discharge milling of titanium alloy: analysis of surface roughness |
title_fullStr |
Powder mixed micro electro discharge milling of titanium alloy: analysis of surface roughness |
title_full_unstemmed |
Powder mixed micro electro discharge milling of titanium alloy: analysis of surface roughness |
title_sort |
powder mixed micro electro discharge milling of titanium alloy: analysis of surface roughness |
publisher |
Trans Tech Publications, Switzerland |
publishDate |
2012 |
url |
http://irep.iium.edu.my/2251/ http://irep.iium.edu.my/2251/ http://irep.iium.edu.my/2251/1/Powder_Mixed_Micro_Electro_Discharge_Milling.pdf |
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2023-09-18T20:09:47Z |
last_indexed |
2023-09-18T20:09:47Z |
_version_ |
1777407400508129280 |