Effect of surface modification of acetabular cup with embedded micro-pits on friction properties
This study describes an investigation of the effect on friction when an acetabular cup surface is embedded with micro-pits. The micro-pit is potentially a suitable structure to act as a lubricant reservoir, in order to reduce the level of friction present between the surfaces of a hip prosthesis. Th...
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my.utm.597112022-04-26T00:40:10Z http://eprints.utm.my/id/eprint/59711/ Effect of surface modification of acetabular cup with embedded micro-pits on friction properties Samion, Syahrullail Sapawe, Norzahir M. D., Razak Yahya, Azli TJ Mechanical engineering and machinery This study describes an investigation of the effect on friction when an acetabular cup surface is embedded with micro-pits. The micro-pit is potentially a suitable structure to act as a lubricant reservoir, in order to reduce the level of friction present between the surfaces of a hip prosthesis. The experiments were carried out using a modified four-ball tribometer. Refined, Bleached and Deodorised (RBD) palm olein and additive-free paraffinic mineral oil were selected to provide lubrication. When the palm olein was applied to the acetabular surface, friction in the hip implant decreased. Severe damage on the acetabular surface resulted in lubricant-free test conditions. Meanwhile, the results of tests on the acetabular cup, with 10 to 40 embedded micro-pits on the surface, indicated that friction had decreased. Based on the experiments, surface modification of the acetabular cup with embedded micro-pits, could prolong the biomechanics of hip prostheses. Science and Education Publishing Co. Ltd 2014 Article PeerReviewed Samion, Syahrullail and Sapawe, Norzahir and M. D., Razak and Yahya, Azli (2014) Effect of surface modification of acetabular cup with embedded micro-pits on friction properties. American Journal of Mechanical Engineering, 2 (5). pp. 125-129. ISSN 2328-4110 |
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TJ Mechanical engineering and machinery Samion, Syahrullail Sapawe, Norzahir M. D., Razak Yahya, Azli Effect of surface modification of acetabular cup with embedded micro-pits on friction properties |
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This study describes an investigation of the effect on friction when an acetabular cup surface is embedded with micro-pits. The micro-pit is potentially a suitable structure to act as a lubricant reservoir, in order to reduce the level of friction present between the surfaces of a hip prosthesis. The experiments were carried out using a modified four-ball tribometer. Refined, Bleached and Deodorised (RBD) palm olein and additive-free paraffinic mineral oil were selected to provide lubrication. When the palm olein was applied to the acetabular surface, friction in the hip implant decreased. Severe damage on the acetabular surface resulted in lubricant-free test conditions. Meanwhile, the results of tests on the acetabular cup, with 10 to 40 embedded micro-pits on the surface, indicated that friction had decreased. Based on the experiments, surface modification of the acetabular cup with embedded micro-pits, could prolong the biomechanics of hip prostheses. |
format |
Article |
author |
Samion, Syahrullail Sapawe, Norzahir M. D., Razak Yahya, Azli |
author_facet |
Samion, Syahrullail Sapawe, Norzahir M. D., Razak Yahya, Azli |
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Samion, Syahrullail |
title |
Effect of surface modification of acetabular cup with embedded micro-pits on friction properties |
title_short |
Effect of surface modification of acetabular cup with embedded micro-pits on friction properties |
title_full |
Effect of surface modification of acetabular cup with embedded micro-pits on friction properties |
title_fullStr |
Effect of surface modification of acetabular cup with embedded micro-pits on friction properties |
title_full_unstemmed |
Effect of surface modification of acetabular cup with embedded micro-pits on friction properties |
title_sort |
effect of surface modification of acetabular cup with embedded micro-pits on friction properties |
publisher |
Science and Education Publishing Co. Ltd |
publishDate |
2014 |
url |
http://eprints.utm.my/id/eprint/59711/ |
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1732945375703072768 |
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13.214268 |