Effect of grinding media size and shape on the iron mill scale particle and properties

A study was undertaken to determine how the effect of grinding media size and shape on the iron mill scale particle size and properties. Comparative tests were conducted using the two types of grinding media which are cylindrical porcelain with the 3 sizes (Ø 3.19 x 3.185cm, Ø 2.05 x 2.1cm , Ø 1.32...

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Main Author: Che Wan Noorakma Abdullah
Other Authors: Ruhiyuddin Mohd Zaki (Advisor)
Format: Learning Object
Language:English
Published: Universiti Malaysia Perlis 2008
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Online Access:http://dspace.unimap.edu.my/xmlui/handle/123456789/3359
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spelling my.unimap-33592008-11-27T02:59:32Z Effect of grinding media size and shape on the iron mill scale particle and properties Che Wan Noorakma Abdullah Ruhiyuddin Mohd Zaki (Advisor) Powder metallurgy Milling machinery Powder size determination Iron mill Iron mill -- Properties analysis Iron -- Metallurgy A study was undertaken to determine how the effect of grinding media size and shape on the iron mill scale particle size and properties. Comparative tests were conducted using the two types of grinding media which are cylindrical porcelain with the 3 sizes (Ø 3.19 x 3.185cm, Ø 2.05 x 2.1cm , Ø 1.32 x 1.33cm) and spherical steel ball (Ø 2.5cm) in laboratory roll mill at various conditions of equality such as media mass, size combination distribution, surface area and volume. The laboratory test was run at twelve experiments with the difference combination of size and shape of grinding media. During the milling process, the speed and time of roll mill were fixed constantly at 230.7 rpm and 4 hours for every milling process respectively. After milling, the ground particle of iron mill scale was analyzed and characterized by four analyses including morphology analysis by Scanning Electron Microscope, particle size analysis by Particle Size Analyzer, the surface area and porosity by Braunauer Emmet Teller and also the phase identification by X- ray Diffraction and Energy Dispersive X-ray. The laboratory results indicated that combination size of cylindrical porcelain media produce a product with slightly less oversize due to their greater surface area, but essentially the same sizing at the fine end as that produces with the steel balls medium. The reason may be that the advantage of greater surface area is balanced by the line contact and area contact grinding action with the cylindrical porcelain. It also was found that the morphological of ground product of cylindrical porcelain is modular and irregular shape while the ground product of sphere steel ball give the morphology shape as flaky and spongy which could effect to mechanical properties of powder metallurgy product. 2008-11-27T02:59:31Z 2008-11-27T02:59:31Z 2008-05 Learning Object http://hdl.handle.net/123456789/3359 en Universiti Malaysia Perlis School of Materials Engineering
institution Universiti Malaysia Perlis
building UniMAP Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Perlis
content_source UniMAP Library Digital Repository
url_provider http://dspace.unimap.edu.my/
language English
topic Powder metallurgy
Milling machinery
Powder size determination
Iron mill
Iron mill -- Properties analysis
Iron -- Metallurgy
spellingShingle Powder metallurgy
Milling machinery
Powder size determination
Iron mill
Iron mill -- Properties analysis
Iron -- Metallurgy
Che Wan Noorakma Abdullah
Effect of grinding media size and shape on the iron mill scale particle and properties
description A study was undertaken to determine how the effect of grinding media size and shape on the iron mill scale particle size and properties. Comparative tests were conducted using the two types of grinding media which are cylindrical porcelain with the 3 sizes (Ø 3.19 x 3.185cm, Ø 2.05 x 2.1cm , Ø 1.32 x 1.33cm) and spherical steel ball (Ø 2.5cm) in laboratory roll mill at various conditions of equality such as media mass, size combination distribution, surface area and volume. The laboratory test was run at twelve experiments with the difference combination of size and shape of grinding media. During the milling process, the speed and time of roll mill were fixed constantly at 230.7 rpm and 4 hours for every milling process respectively. After milling, the ground particle of iron mill scale was analyzed and characterized by four analyses including morphology analysis by Scanning Electron Microscope, particle size analysis by Particle Size Analyzer, the surface area and porosity by Braunauer Emmet Teller and also the phase identification by X- ray Diffraction and Energy Dispersive X-ray. The laboratory results indicated that combination size of cylindrical porcelain media produce a product with slightly less oversize due to their greater surface area, but essentially the same sizing at the fine end as that produces with the steel balls medium. The reason may be that the advantage of greater surface area is balanced by the line contact and area contact grinding action with the cylindrical porcelain. It also was found that the morphological of ground product of cylindrical porcelain is modular and irregular shape while the ground product of sphere steel ball give the morphology shape as flaky and spongy which could effect to mechanical properties of powder metallurgy product.
author2 Ruhiyuddin Mohd Zaki (Advisor)
author_facet Ruhiyuddin Mohd Zaki (Advisor)
Che Wan Noorakma Abdullah
format Learning Object
author Che Wan Noorakma Abdullah
author_sort Che Wan Noorakma Abdullah
title Effect of grinding media size and shape on the iron mill scale particle and properties
title_short Effect of grinding media size and shape on the iron mill scale particle and properties
title_full Effect of grinding media size and shape on the iron mill scale particle and properties
title_fullStr Effect of grinding media size and shape on the iron mill scale particle and properties
title_full_unstemmed Effect of grinding media size and shape on the iron mill scale particle and properties
title_sort effect of grinding media size and shape on the iron mill scale particle and properties
publisher Universiti Malaysia Perlis
publishDate 2008
url http://dspace.unimap.edu.my/xmlui/handle/123456789/3359
_version_ 1643787789654818816
score 13.214268