Wear behaviour of powder metallurgy iron composite reinforced with 20wt.% silica particles
In an effort to find a cheaper production of particles reinforced metal matrix composite for tribological applications, this study focuses on ferum, which is known as the oldest and cheapest tribological material. Natural silica sand extracted from ex mining land was used as the reinforcement. Study...
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Laboratory Soete, Ghent University
2014
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my.iium.irep.548912021-03-05T01:01:43Z http://irep.iium.edu.my/54891/ Wear behaviour of powder metallurgy iron composite reinforced with 20wt.% silica particles Amir, Adibah Mamat, Othman TA401 Materials of engineering and construction In an effort to find a cheaper production of particles reinforced metal matrix composite for tribological applications, this study focuses on ferum, which is known as the oldest and cheapest tribological material. Natural silica sand extracted from ex mining land was used as the reinforcement. Study of its wear performance was conducted with ball-on-disk apparatus in dry sliding condition. The effects of sliding distances, rotational speeds, and applied loads on the wear behaviors of the composite were investigated. Examination from Field Emission Scanning Electron Microscopy (FE-SEM) had revealed that the dominant wear mechanism was delamination followed by oxidation and adhesion. Interestingly, reinforcement of SiO2 sand particles has not been beneficial in reducing or delaying wear, instead it had changed the wear behavior of the composite. Laboratory Soete, Ghent University 2014-09-29 Article PeerReviewed application/pdf en http://irep.iium.edu.my/54891/7/54891_Wear%20behavior%20of%20powder%20metallurgy%20iron%20composite%20reinforced.pdf Amir, Adibah and Mamat, Othman (2014) Wear behaviour of powder metallurgy iron composite reinforced with 20wt.% silica particles. International Journal of Fracture Fatigue and Wear, 2. pp. 314-319. ISSN 2294-7868 |
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TA401 Materials of engineering and construction Amir, Adibah Mamat, Othman Wear behaviour of powder metallurgy iron composite reinforced with 20wt.% silica particles |
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In an effort to find a cheaper production of particles reinforced metal matrix composite for tribological applications, this study focuses on ferum, which is known as the oldest and cheapest tribological material. Natural silica sand extracted from ex mining land was used as the reinforcement. Study of its wear performance was conducted with ball-on-disk apparatus in dry sliding condition. The effects of sliding distances, rotational speeds, and applied loads on the wear behaviors of the composite were investigated. Examination from Field Emission Scanning Electron Microscopy (FE-SEM) had revealed that the dominant wear mechanism was delamination followed by oxidation and adhesion. Interestingly, reinforcement of SiO2 sand particles has not been beneficial in reducing or delaying wear, instead it had changed the wear behavior of the composite. |
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Article |
author |
Amir, Adibah Mamat, Othman |
author_facet |
Amir, Adibah Mamat, Othman |
author_sort |
Amir, Adibah |
title |
Wear behaviour of powder metallurgy iron composite reinforced with 20wt.% silica particles |
title_short |
Wear behaviour of powder metallurgy iron composite reinforced with 20wt.% silica particles |
title_full |
Wear behaviour of powder metallurgy iron composite reinforced with 20wt.% silica particles |
title_fullStr |
Wear behaviour of powder metallurgy iron composite reinforced with 20wt.% silica particles |
title_full_unstemmed |
Wear behaviour of powder metallurgy iron composite reinforced with 20wt.% silica particles |
title_sort |
wear behaviour of powder metallurgy iron composite reinforced with 20wt.% silica particles |
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Laboratory Soete, Ghent University |
publishDate |
2014 |
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http://irep.iium.edu.my/54891/7/54891_Wear%20behavior%20of%20powder%20metallurgy%20iron%20composite%20reinforced.pdf http://irep.iium.edu.my/54891/ |
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