Determining Optimum EDM Parameters in Drilling a Small Hole by Taguchi Method
Electro Discharge Machining (EDM) process uses electric sparks to generate high temperature and melts the workpiece material. In drilling process of EDM, electro thermal mechanism between electrode and workpiece creates a hole. The present study performs Taguchi method to search the optimal process...
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Interscience
2009
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oai:umpir.ump.edu.my:104612018-03-19T04:20:12Z http://umpir.ump.edu.my/id/eprint/10461/ Determining Optimum EDM Parameters in Drilling a Small Hole by Taguchi Method Ahmad Razlan, Yusoff Z., Ghazalli Hazami, Che Hussain T Technology (General) TJ Mechanical engineering and machinery Electro Discharge Machining (EDM) process uses electric sparks to generate high temperature and melts the workpiece material. In drilling process of EDM, electro thermal mechanism between electrode and workpiece creates a hole. The present study performs Taguchi method to search the optimal process parameters for high speed super drill machine that was used to make a small hole from aluminium material. An Orthogonal (OA) array, main effect, Signal-to-Noise (S/N) ration and Analysis of Variance (ANOVA) were employed to investigate the hole size of the copper electrode of diameter 1.0 mm penetration. The optimum EDM hole process can be established through this method and the major parameters that effect the hole enlarge can be also detected and verified the effectiveness through experimental results. Interscience 2009 Article PeerReviewed application/pdf en http://umpir.ump.edu.my/id/eprint/10461/1/IJMTM.2009.023952 Ahmad Razlan, Yusoff and Z., Ghazalli and Hazami, Che Hussain (2009) Determining Optimum EDM Parameters in Drilling a Small Hole by Taguchi Method. International Journal of Manufacturing Technology and Management, 17 (4). pp. 345-352. ISSN 1368-2148 http://dx.doi.org/10.1504/IJMTM.2009.023952 doi:10.1504/IJMTM.2009.023952 |
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T Technology (General) TJ Mechanical engineering and machinery |
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T Technology (General) TJ Mechanical engineering and machinery Ahmad Razlan, Yusoff Z., Ghazalli Hazami, Che Hussain Determining Optimum EDM Parameters in Drilling a Small Hole by Taguchi Method |
description |
Electro Discharge Machining (EDM) process uses electric sparks to generate high temperature and melts the workpiece material. In drilling process of EDM, electro thermal mechanism between electrode and workpiece creates a hole. The present study performs Taguchi method to search the optimal process parameters for high speed super drill machine that was used to make a small hole from aluminium material. An Orthogonal (OA) array, main effect, Signal-to-Noise (S/N) ration and Analysis of Variance (ANOVA) were employed to investigate the hole size of the copper electrode of diameter 1.0 mm penetration. The optimum EDM hole process can be established through this method and the major parameters that effect the hole enlarge can be also detected and verified the effectiveness through experimental results. |
format |
Article |
author |
Ahmad Razlan, Yusoff Z., Ghazalli Hazami, Che Hussain |
author_facet |
Ahmad Razlan, Yusoff Z., Ghazalli Hazami, Che Hussain |
author_sort |
Ahmad Razlan, Yusoff |
title |
Determining Optimum EDM Parameters in Drilling a Small Hole by Taguchi Method |
title_short |
Determining Optimum EDM Parameters in Drilling a Small Hole by Taguchi Method |
title_full |
Determining Optimum EDM Parameters in Drilling a Small Hole by Taguchi Method |
title_fullStr |
Determining Optimum EDM Parameters in Drilling a Small Hole by Taguchi Method |
title_full_unstemmed |
Determining Optimum EDM Parameters in Drilling a Small Hole by Taguchi Method |
title_sort |
determining optimum edm parameters in drilling a small hole by taguchi method |
publisher |
Interscience |
publishDate |
2009 |
url |
http://umpir.ump.edu.my/id/eprint/10461/ http://umpir.ump.edu.my/id/eprint/10461/ http://umpir.ump.edu.my/id/eprint/10461/ http://umpir.ump.edu.my/id/eprint/10461/1/IJMTM.2009.023952 |
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2018-09-07T01:23:21Z |
last_indexed |
2018-09-07T01:23:21Z |
_version_ |
1610909904627826688 |