Tribological properties of surface coated duplex stainless steel containing SiC ceramic particles

This paper presents an experimental investigation on the tribological properties of coated duplex stainless steel (DSS) containing SiC ceramic particles. The preplaced SiC powder with 20 µm particle size and TIG torch surfacing was conducted with energy inputs of 480, 768 and 1440 J/mm. The com...

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Main Authors: Paijan, Lailatul Harina, Maleque, Md. Abdul
Format: Article
Language:English
English
Published: Universiti Teknologi Malaysia 2018
Subjects:
Online Access:http://irep.iium.edu.my/66561/
http://irep.iium.edu.my/66561/
http://irep.iium.edu.my/66561/1/66561_Tribological%20properties%20of%20surface%20coated%20duplex.pdf
http://irep.iium.edu.my/66561/2/66561_Tribological%20properties%20of%20surface%20coated%20duplex_WOS.pdf
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spelling iium-665612019-01-30T04:30:57Z http://irep.iium.edu.my/66561/ Tribological properties of surface coated duplex stainless steel containing SiC ceramic particles Paijan, Lailatul Harina Maleque, Md. Abdul T11.95 Industrial directories TA401 Materials of engineering and construction TN600 Metallurgy TN799.5 Nonmetallic minerals This paper presents an experimental investigation on the tribological properties of coated duplex stainless steel (DSS) containing SiC ceramic particles. The preplaced SiC powder with 20 µm particle size and TIG torch surfacing was conducted with energy inputs of 480, 768 and 1440 J/mm. The comparisons of the room temperature wear behavior of substrate DSS and coated SiC duplex stainless steel was carried out against alumina ceramic ball. The effects of the process parameters on the hardness and wear behavior were analyzed in this study. The coated surface of DSS produced hardness about 2~4 times higher than uncoated DSS. It was revealed that coated surface was improved significantly with lower wear weight loss and coefficient of friction (about 2 times lower) than the substrate material. The embedded SiC into the surface of steel has improved the wear behaviour of DSS. This is due to SiC dendrites structure that strongly bonded to the steel resulting the reduction of the friction between coated surface and the alumina ball. The wear worn surface was observed under SEM with a very mild abrasive wear for coated surface compared to severe abrasive wear for substrate DSS surface. The coated surface has showed lower surface roughness and wear depth penetration indicated that the presence of the SiC reduced the wear of the material. Universiti Teknologi Malaysia 2018-09 Article PeerReviewed application/pdf en http://irep.iium.edu.my/66561/1/66561_Tribological%20properties%20of%20surface%20coated%20duplex.pdf application/pdf en http://irep.iium.edu.my/66561/2/66561_Tribological%20properties%20of%20surface%20coated%20duplex_WOS.pdf Paijan, Lailatul Harina and Maleque, Md. Abdul (2018) Tribological properties of surface coated duplex stainless steel containing SiC ceramic particles. Jurnal Tribologi, 18. pp. 136-148. E-ISSN 2289-7232 https://jurnaltribologi.mytribos.org/v18/JT-18-136-148.pdf
repository_type Digital Repository
institution_category Local University
institution International Islamic University Malaysia
building IIUM Repository
collection Online Access
language English
English
topic T11.95 Industrial directories
TA401 Materials of engineering and construction
TN600 Metallurgy
TN799.5 Nonmetallic minerals
spellingShingle T11.95 Industrial directories
TA401 Materials of engineering and construction
TN600 Metallurgy
TN799.5 Nonmetallic minerals
Paijan, Lailatul Harina
Maleque, Md. Abdul
Tribological properties of surface coated duplex stainless steel containing SiC ceramic particles
description This paper presents an experimental investigation on the tribological properties of coated duplex stainless steel (DSS) containing SiC ceramic particles. The preplaced SiC powder with 20 µm particle size and TIG torch surfacing was conducted with energy inputs of 480, 768 and 1440 J/mm. The comparisons of the room temperature wear behavior of substrate DSS and coated SiC duplex stainless steel was carried out against alumina ceramic ball. The effects of the process parameters on the hardness and wear behavior were analyzed in this study. The coated surface of DSS produced hardness about 2~4 times higher than uncoated DSS. It was revealed that coated surface was improved significantly with lower wear weight loss and coefficient of friction (about 2 times lower) than the substrate material. The embedded SiC into the surface of steel has improved the wear behaviour of DSS. This is due to SiC dendrites structure that strongly bonded to the steel resulting the reduction of the friction between coated surface and the alumina ball. The wear worn surface was observed under SEM with a very mild abrasive wear for coated surface compared to severe abrasive wear for substrate DSS surface. The coated surface has showed lower surface roughness and wear depth penetration indicated that the presence of the SiC reduced the wear of the material.
format Article
author Paijan, Lailatul Harina
Maleque, Md. Abdul
author_facet Paijan, Lailatul Harina
Maleque, Md. Abdul
author_sort Paijan, Lailatul Harina
title Tribological properties of surface coated duplex stainless steel containing SiC ceramic particles
title_short Tribological properties of surface coated duplex stainless steel containing SiC ceramic particles
title_full Tribological properties of surface coated duplex stainless steel containing SiC ceramic particles
title_fullStr Tribological properties of surface coated duplex stainless steel containing SiC ceramic particles
title_full_unstemmed Tribological properties of surface coated duplex stainless steel containing SiC ceramic particles
title_sort tribological properties of surface coated duplex stainless steel containing sic ceramic particles
publisher Universiti Teknologi Malaysia
publishDate 2018
url http://irep.iium.edu.my/66561/
http://irep.iium.edu.my/66561/
http://irep.iium.edu.my/66561/1/66561_Tribological%20properties%20of%20surface%20coated%20duplex.pdf
http://irep.iium.edu.my/66561/2/66561_Tribological%20properties%20of%20surface%20coated%20duplex_WOS.pdf
first_indexed 2023-09-18T21:34:31Z
last_indexed 2023-09-18T21:34:31Z
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