Analysis of deep hole drilling in presence of electromagnetic field using Taguchi technique

Copyright © 2014 by ASME. Electromagnetic field assisted machining is potential and is of particular interest to be explored to improve machining quality with minimum environmental effect. In this study, the effect of electromagnetic field on tool and workpiece is analyzed along with the effects of...

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Main Authors: Najarian, F., Nor, F., Noordin, M., Kurniawan, Denni
Format: Conference Paper
Published: 2014
Online Access:http://hdl.handle.net/20.500.11937/67645
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author Najarian, F.
Nor, F.
Noordin, M.
Kurniawan, Denni
author_facet Najarian, F.
Nor, F.
Noordin, M.
Kurniawan, Denni
author_sort Najarian, F.
building Curtin Institutional Repository
collection Online Access
description Copyright © 2014 by ASME. Electromagnetic field assisted machining is potential and is of particular interest to be explored to improve machining quality with minimum environmental effect. In this study, the effect of electromagnetic field on tool and workpiece is analyzed along with the effects of presence of drilling bush, feedrate, and spindle speed to the quality of hole for deep hole drilling. The effect of these control factors to the drilled hole's cylindricity error and roundness error was determined using Taguchi technique. L16 orthogonal array design of experiments was used, with regression model was calculated and tested using analysis of variance. Spindle speed was found to be the only significant factor, with other factors did not give significant effect to roundness or cylindricity, except for tool magnetization which affected cylindricity. Issues with magnetization system are likely hinder the magnetic field to exhibit potential to improve machining quality, and should be addressed for future study.
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format Conference Paper
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institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T10:34:34Z
publishDate 2014
recordtype eprints
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spelling curtin-20.500.11937-676452018-05-18T08:06:23Z Analysis of deep hole drilling in presence of electromagnetic field using Taguchi technique Najarian, F. Nor, F. Noordin, M. Kurniawan, Denni Copyright © 2014 by ASME. Electromagnetic field assisted machining is potential and is of particular interest to be explored to improve machining quality with minimum environmental effect. In this study, the effect of electromagnetic field on tool and workpiece is analyzed along with the effects of presence of drilling bush, feedrate, and spindle speed to the quality of hole for deep hole drilling. The effect of these control factors to the drilled hole's cylindricity error and roundness error was determined using Taguchi technique. L16 orthogonal array design of experiments was used, with regression model was calculated and tested using analysis of variance. Spindle speed was found to be the only significant factor, with other factors did not give significant effect to roundness or cylindricity, except for tool magnetization which affected cylindricity. Issues with magnetization system are likely hinder the magnetic field to exhibit potential to improve machining quality, and should be addressed for future study. 2014 Conference Paper http://hdl.handle.net/20.500.11937/67645 10.1115/IMECE2014-40139 restricted
spellingShingle Najarian, F.
Nor, F.
Noordin, M.
Kurniawan, Denni
Analysis of deep hole drilling in presence of electromagnetic field using Taguchi technique
title Analysis of deep hole drilling in presence of electromagnetic field using Taguchi technique
title_full Analysis of deep hole drilling in presence of electromagnetic field using Taguchi technique
title_fullStr Analysis of deep hole drilling in presence of electromagnetic field using Taguchi technique
title_full_unstemmed Analysis of deep hole drilling in presence of electromagnetic field using Taguchi technique
title_short Analysis of deep hole drilling in presence of electromagnetic field using Taguchi technique
title_sort analysis of deep hole drilling in presence of electromagnetic field using taguchi technique
url http://hdl.handle.net/20.500.11937/67645