Improvement of Surface Roughness Quality for Stainless Steel 420 Plate Using Magnetic Abrasive Finishing Method

An experimental study was carried out to improve the surface roughness quality of the stainless steel 420 using magnetic abrasive finishing method (MAF). Four independent operation parameters were studied (working gap, coil current, feed rate, and table stroke), and their effects on the MAF process...

Full description

Bibliographic Details
Main Author: Yahya M. Hamad
Format: Article
Language:English
Published: Al-Khwarizmi College of Engineering – University of Baghdad 2010-01-01
Series:Al-Khawarizmi Engineering Journal
Subjects:
MAF
Online Access:http://www.iasj.net/iasj?func=fulltext&aId=2180
id doaj-8a2e3d4757094711a888243d18c07313
record_format Article
spelling doaj-8a2e3d4757094711a888243d18c073132020-11-25T02:34:01Zeng Al-Khwarizmi College of Engineering – University of BaghdadAl-Khawarizmi Engineering Journal1818-11712010-01-01641020Improvement of Surface Roughness Quality for Stainless Steel 420 Plate Using Magnetic Abrasive Finishing MethodYahya M. HamadAn experimental study was carried out to improve the surface roughness quality of the stainless steel 420 using magnetic abrasive finishing method (MAF). Four independent operation parameters were studied (working gap, coil current, feed rate, and table stroke), and their effects on the MAF process were introduced. A rotating coil electromagnet was designed and implemented to use with plane surfaces. The magnetic abrasive powder used was formed from 33%Fe and 67% Quartz of (250µm mesh size). The lubricant type SAE 20W was used as a binder for the powder contents. Taguchi method was used for designing the experiments and the optimal values of the selected parameters were found. An empirical equation representing the relation between surface roughness with operation parameters have been achieved.http://www.iasj.net/iasj?func=fulltext&aId=2180Magnetic abrasive finishingMAFabrasive powdersurface roughnessinductortaguchi methodorthogonal arrayselectromagnetic poles
collection DOAJ
language English
format Article
sources DOAJ
author Yahya M. Hamad
spellingShingle Yahya M. Hamad
Improvement of Surface Roughness Quality for Stainless Steel 420 Plate Using Magnetic Abrasive Finishing Method
Al-Khawarizmi Engineering Journal
Magnetic abrasive finishing
MAF
abrasive powder
surface roughness
inductor
taguchi method
orthogonal arrays
electromagnetic poles
author_facet Yahya M. Hamad
author_sort Yahya M. Hamad
title Improvement of Surface Roughness Quality for Stainless Steel 420 Plate Using Magnetic Abrasive Finishing Method
title_short Improvement of Surface Roughness Quality for Stainless Steel 420 Plate Using Magnetic Abrasive Finishing Method
title_full Improvement of Surface Roughness Quality for Stainless Steel 420 Plate Using Magnetic Abrasive Finishing Method
title_fullStr Improvement of Surface Roughness Quality for Stainless Steel 420 Plate Using Magnetic Abrasive Finishing Method
title_full_unstemmed Improvement of Surface Roughness Quality for Stainless Steel 420 Plate Using Magnetic Abrasive Finishing Method
title_sort improvement of surface roughness quality for stainless steel 420 plate using magnetic abrasive finishing method
publisher Al-Khwarizmi College of Engineering – University of Baghdad
series Al-Khawarizmi Engineering Journal
issn 1818-1171
publishDate 2010-01-01
description An experimental study was carried out to improve the surface roughness quality of the stainless steel 420 using magnetic abrasive finishing method (MAF). Four independent operation parameters were studied (working gap, coil current, feed rate, and table stroke), and their effects on the MAF process were introduced. A rotating coil electromagnet was designed and implemented to use with plane surfaces. The magnetic abrasive powder used was formed from 33%Fe and 67% Quartz of (250µm mesh size). The lubricant type SAE 20W was used as a binder for the powder contents. Taguchi method was used for designing the experiments and the optimal values of the selected parameters were found. An empirical equation representing the relation between surface roughness with operation parameters have been achieved.
topic Magnetic abrasive finishing
MAF
abrasive powder
surface roughness
inductor
taguchi method
orthogonal arrays
electromagnetic poles
url http://www.iasj.net/iasj?func=fulltext&aId=2180
work_keys_str_mv AT yahyamhamad improvementofsurfaceroughnessqualityforstainlesssteel420plateusingmagneticabrasivefinishingmethod
_version_ 1724810725117919232