Investigation of finish cut of micro electro discharge milling for nano surface finish

In this paper the machining condition to achieve nano surface roughness in finish cut micro electro discharge milling was investigated. The effect of feed rate and capacitance were studied on average surface roughness (Ra), and maximum peak-to-valley roughness height (Ry). Statistical models were...

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Main Authors: Ali, Mohammad Yeakub, Mehfuz, R.
Format: Proceeding Paper
Language:English
Published: 2008
Subjects:
Online Access:http://irep.iium.edu.my/27156/
http://irep.iium.edu.my/27156/1/047_nanoMan_2008_Spore_ID27.pdf
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author Ali, Mohammad Yeakub
Mehfuz, R.
author_facet Ali, Mohammad Yeakub
Mehfuz, R.
author_sort Ali, Mohammad Yeakub
building IIUM Repository
collection Online Access
description In this paper the machining condition to achieve nano surface roughness in finish cut micro electro discharge milling was investigated. The effect of feed rate and capacitance were studied on average surface roughness (Ra), and maximum peak-to-valley roughness height (Ry). Statistical models were developed using three-level twofactor experimental design. Ra and Ry were minimized using desirability function approach. The value of desirability was found to be 98%. The minimum values of Ra and Ry were 23 nm and 173 nm respectively for 1.00 μm s-1 feed rate, 0.01 nF capacitance and 80 volts voltage. Verification experiments were conducted to check the accuracy of the model, where the responses were found very close to the predicted values. The developed models can be used to generate nano surface finish for various microstructures.
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format Proceeding Paper
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institution International Islamic University Malaysia
institution_category Local University
language English
last_indexed 2025-11-14T15:23:02Z
publishDate 2008
recordtype eprints
repository_type Digital Repository
spelling iium-271562013-09-06T01:50:52Z http://irep.iium.edu.my/27156/ Investigation of finish cut of micro electro discharge milling for nano surface finish Ali, Mohammad Yeakub Mehfuz, R. TS Manufactures In this paper the machining condition to achieve nano surface roughness in finish cut micro electro discharge milling was investigated. The effect of feed rate and capacitance were studied on average surface roughness (Ra), and maximum peak-to-valley roughness height (Ry). Statistical models were developed using three-level twofactor experimental design. Ra and Ry were minimized using desirability function approach. The value of desirability was found to be 98%. The minimum values of Ra and Ry were 23 nm and 173 nm respectively for 1.00 μm s-1 feed rate, 0.01 nF capacitance and 80 volts voltage. Verification experiments were conducted to check the accuracy of the model, where the responses were found very close to the predicted values. The developed models can be used to generate nano surface finish for various microstructures. 2008 Proceeding Paper PeerReviewed application/pdf en http://irep.iium.edu.my/27156/1/047_nanoMan_2008_Spore_ID27.pdf Ali, Mohammad Yeakub and Mehfuz, R. (2008) Investigation of finish cut of micro electro discharge milling for nano surface finish. In: International Conference on nanoManufacturing (nanoMan2008), 13-16 July 2008, Singapore.
spellingShingle TS Manufactures
Ali, Mohammad Yeakub
Mehfuz, R.
Investigation of finish cut of micro electro discharge milling for nano surface finish
title Investigation of finish cut of micro electro discharge milling for nano surface finish
title_full Investigation of finish cut of micro electro discharge milling for nano surface finish
title_fullStr Investigation of finish cut of micro electro discharge milling for nano surface finish
title_full_unstemmed Investigation of finish cut of micro electro discharge milling for nano surface finish
title_short Investigation of finish cut of micro electro discharge milling for nano surface finish
title_sort investigation of finish cut of micro electro discharge milling for nano surface finish
topic TS Manufactures
url http://irep.iium.edu.my/27156/
http://irep.iium.edu.my/27156/1/047_nanoMan_2008_Spore_ID27.pdf