Wear Resistance and Interlocking Properties of AISI 5200 Steel Ball Bearings Coated by Nanocomposites

The performance of ball bearings is strongly influenced by the lubrication system. In this research, the development of a lubrication system was performed by the formation of an interlocking system through a composite coating, i.e. Zn3(PO4)2 / MoS2 / MWCNT / nanographite / Na2SiO3 prepared by c...

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Main Authors: Winarto, Dedi Priadi, Nofrijon Sofyan, Martinus Adi Anggoro
Format: Article
Language:English
Published: Universitas Indonesia 2015-07-01
Series:International Journal of Technology
Subjects:
Online Access:http://ijtech.eng.ui.ac.id/article/view/1371
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spelling doaj-ca7fac3fb2a64f2cae3def7e89c3efa02020-11-24T22:02:35ZengUniversitas IndonesiaInternational Journal of Technology2086-96142087-21002015-07-016347147910.14716/ijtech.v6i3.13711371Wear Resistance and Interlocking Properties of AISI 5200 Steel Ball Bearings Coated by NanocompositesWinarto0Dedi Priadi1Nofrijon Sofyan2Martinus Adi Anggoro3Department of Metallurgical and Materials Engineering, Faculty of Engineering, Universitas Indonesia, Kampus Baru UI Depok, Depok 16424, IndonesiaDepartment of Metallurgical and Materials Engineering, Faculty of Engineering, Universitas Indonesia, Kampus Baru UI Depok, Depok 16424, IndonesiaDepartment of Metallurgical and Materials Engineering, Faculty of Engineering, Universitas Indonesia, Kampus Baru UI Depok, Depok 16424, IndonesiaDepartment of Metallurgical and Materials Engineering, Faculty of Engineering, Universitas Indonesia, Kampus Baru UI Depok, Depok 16424, IndonesiaThe performance of ball bearings is strongly influenced by the lubrication system. In this research, the development of a lubrication system was performed by the formation of an interlocking system through a composite coating, i.e. Zn3(PO4)2 / MoS2 / MWCNT / nanographite / Na2SiO3 prepared by chemical immersion. The coating was applied through the one-mixing-layer and multi-layer techniques. The results showed that the one-mixing-layer technique has the ability to form an homogeneous thin layer with a surface roughness index that varies between 1.00 µm and 1.35 µm, whereas the thickness of the composite layers was found to be in the range from 5 µm to 6 µm. The multi-walled carbon nanotube (MWCNT) technique increased the interlocking capabilities of the coating and the solid lubricant. The one-mixing-layer technique indicated better results than that of multi-layer coated balls in terms of distribution and uniformity of elements on the coating surface, good interlocking between the composite compounds, and the thickness of the layer formed. The performance of nanocomposite coatings on the friction of the steel balls also showed that the ball bearings with a one-mixing-layer composite coating have a higher wear resistance than that of both the uncoated and the multi-layer coated ball bearings.http://ijtech.eng.ui.ac.id/article/view/1371Ball bearings, Carbon nanotubes, Interlocking, Lubricant, Nanocomposite
collection DOAJ
language English
format Article
sources DOAJ
author Winarto
Dedi Priadi
Nofrijon Sofyan
Martinus Adi Anggoro
spellingShingle Winarto
Dedi Priadi
Nofrijon Sofyan
Martinus Adi Anggoro
Wear Resistance and Interlocking Properties of AISI 5200 Steel Ball Bearings Coated by Nanocomposites
International Journal of Technology
Ball bearings, Carbon nanotubes, Interlocking, Lubricant, Nanocomposite
author_facet Winarto
Dedi Priadi
Nofrijon Sofyan
Martinus Adi Anggoro
author_sort Winarto
title Wear Resistance and Interlocking Properties of AISI 5200 Steel Ball Bearings Coated by Nanocomposites
title_short Wear Resistance and Interlocking Properties of AISI 5200 Steel Ball Bearings Coated by Nanocomposites
title_full Wear Resistance and Interlocking Properties of AISI 5200 Steel Ball Bearings Coated by Nanocomposites
title_fullStr Wear Resistance and Interlocking Properties of AISI 5200 Steel Ball Bearings Coated by Nanocomposites
title_full_unstemmed Wear Resistance and Interlocking Properties of AISI 5200 Steel Ball Bearings Coated by Nanocomposites
title_sort wear resistance and interlocking properties of aisi 5200 steel ball bearings coated by nanocomposites
publisher Universitas Indonesia
series International Journal of Technology
issn 2086-9614
2087-2100
publishDate 2015-07-01
description The performance of ball bearings is strongly influenced by the lubrication system. In this research, the development of a lubrication system was performed by the formation of an interlocking system through a composite coating, i.e. Zn3(PO4)2 / MoS2 / MWCNT / nanographite / Na2SiO3 prepared by chemical immersion. The coating was applied through the one-mixing-layer and multi-layer techniques. The results showed that the one-mixing-layer technique has the ability to form an homogeneous thin layer with a surface roughness index that varies between 1.00 µm and 1.35 µm, whereas the thickness of the composite layers was found to be in the range from 5 µm to 6 µm. The multi-walled carbon nanotube (MWCNT) technique increased the interlocking capabilities of the coating and the solid lubricant. The one-mixing-layer technique indicated better results than that of multi-layer coated balls in terms of distribution and uniformity of elements on the coating surface, good interlocking between the composite compounds, and the thickness of the layer formed. The performance of nanocomposite coatings on the friction of the steel balls also showed that the ball bearings with a one-mixing-layer composite coating have a higher wear resistance than that of both the uncoated and the multi-layer coated ball bearings.
topic Ball bearings, Carbon nanotubes, Interlocking, Lubricant, Nanocomposite
url http://ijtech.eng.ui.ac.id/article/view/1371
work_keys_str_mv AT winarto wearresistanceandinterlockingpropertiesofaisi5200steelballbearingscoatedbynanocomposites
AT dedipriadi wearresistanceandinterlockingpropertiesofaisi5200steelballbearingscoatedbynanocomposites
AT nofrijonsofyan wearresistanceandinterlockingpropertiesofaisi5200steelballbearingscoatedbynanocomposites
AT martinusadianggoro wearresistanceandinterlockingpropertiesofaisi5200steelballbearingscoatedbynanocomposites
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