Thin surface layers of iron-based alloys deposited by TIG hardfacing
Hardfacing layers developed by tungsten inert gas (TIG) surface melting on commercial purity titanium placing with a mixture of Fe, C and Si powders under two different traverse speeds (1 mm/s and 2 mm/s) and energy input of 1080 J/mm in an argon gas environment were investigated in terms of surface...
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Japanese Societies of Tribologists
2015
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iium-480332018-05-21T06:20:02Z http://irep.iium.edu.my/48033/ Thin surface layers of iron-based alloys deposited by TIG hardfacing Sakiru, Adeleke Md. Abdul, Maleque Shahjahan, Mridha TA401 Materials of engineering and construction TN600 Metallurgy TS200 Metal manufactures. Metalworking Hardfacing layers developed by tungsten inert gas (TIG) surface melting on commercial purity titanium placing with a mixture of Fe, C and Si powders under two different traverse speeds (1 mm/s and 2 mm/s) and energy input of 1080 J/mm in an argon gas environment were investigated in terms of surface condition, microstructure, hardness and wear of the processed tracks. The surface appearance of treated layers was found to be free from any obvious defect. The TIG hardfacing layer produced dendritic structure due to dissolution of preplaced powder in the Ti melt. A maximum microhardness value of 630 HV 0.5 kgf was found on the surface layer processed with lower speed which was 2.5 to 3.5 times higher than the base material. Ball-on-plate wear tests exhibited better performance of the hardfacing layer than the untreated CP-Ti which is attributed to the presence of carbides and silicides in the Ti melt. Japanese Societies of Tribologists 2015 Article PeerReviewed application/pdf en http://irep.iium.edu.my/48033/1/P106_2015_TriOnline_Adeleke.pdf Sakiru, Adeleke and Md. Abdul, Maleque and Shahjahan, Mridha (2015) Thin surface layers of iron-based alloys deposited by TIG hardfacing. Tribology Online, 10 (6). pp. 434-440. ISSN 1881-2198 |
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TA401 Materials of engineering and construction TN600 Metallurgy TS200 Metal manufactures. Metalworking |
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TA401 Materials of engineering and construction TN600 Metallurgy TS200 Metal manufactures. Metalworking Sakiru, Adeleke Md. Abdul, Maleque Shahjahan, Mridha Thin surface layers of iron-based alloys deposited by TIG hardfacing |
description |
Hardfacing layers developed by tungsten inert gas (TIG) surface melting on commercial purity titanium placing with a mixture of Fe, C and Si powders under two different traverse speeds (1 mm/s and 2 mm/s) and energy input of 1080 J/mm in an argon gas environment were investigated in terms of surface condition, microstructure, hardness and wear of the processed tracks. The surface appearance of treated layers was found to be free from any obvious defect. The TIG hardfacing layer produced dendritic structure due to dissolution of preplaced powder in the Ti melt. A maximum microhardness value of 630 HV 0.5 kgf was found on the surface layer processed with lower speed which was 2.5 to 3.5 times higher than the base material. Ball-on-plate wear tests exhibited better performance of the hardfacing layer than the untreated CP-Ti which is attributed to the presence of carbides and silicides in the Ti melt. |
format |
Article |
author |
Sakiru, Adeleke Md. Abdul, Maleque Shahjahan, Mridha |
author_facet |
Sakiru, Adeleke Md. Abdul, Maleque Shahjahan, Mridha |
author_sort |
Sakiru, Adeleke |
title |
Thin surface layers of iron-based alloys deposited by TIG hardfacing
|
title_short |
Thin surface layers of iron-based alloys deposited by TIG hardfacing
|
title_full |
Thin surface layers of iron-based alloys deposited by TIG hardfacing
|
title_fullStr |
Thin surface layers of iron-based alloys deposited by TIG hardfacing
|
title_full_unstemmed |
Thin surface layers of iron-based alloys deposited by TIG hardfacing
|
title_sort |
thin surface layers of iron-based alloys deposited by tig hardfacing |
publisher |
Japanese Societies of Tribologists |
publishDate |
2015 |
url |
http://irep.iium.edu.my/48033/ http://irep.iium.edu.my/48033/1/P106_2015_TriOnline_Adeleke.pdf |
first_indexed |
2023-09-18T21:08:15Z |
last_indexed |
2023-09-18T21:08:15Z |
_version_ |
1777411078676807680 |