Friction and wear characteristics of Furcraea foetida fiber-reinforced epoxy composites
In the current study, the friction and wear properties of Furcraea foetida fiber-reinforced epoxy composites were investigated. This study evaluated the effect of Furcraea foetida fiber content on the tribological behavior of composites. A water-retting method was employed to extract the fibers, and...
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my.utm.1064602024-07-08T07:12:00Z http://eprints.utm.my/106460/ Friction and wear characteristics of Furcraea foetida fiber-reinforced epoxy composites Syed Hussain, Haja Mohd. Jamir, Mohd. Ridzuan Abdul Majid, Mohd. Shukry Salit, Mohd. Sapuan Ferriawan Yudhanto, Ferriawan Yudhanto Aris Widyo Nugroho, Aris Widyo Nugroho Rani, Muhammad Faiz Hilmi TJ Mechanical engineering and machinery In the current study, the friction and wear properties of Furcraea foetida fiber-reinforced epoxy composites were investigated. This study evaluated the effect of Furcraea foetida fiber content on the tribological behavior of composites. A water-retting method was employed to extract the fibers, and resin transfer molding was used to fabricate the composites. The frictional force, coefficient of friction (COF), and wear rate were measured under dry test conditions and various applied loads (80, 100, 120, and 140 N). Microstructural analysis was conducted using scanning electron microscopy to investigate the surface morphology and wear mechanisms of the composites. The results revealed that the composite with 50 vol% of fibers exhibits the lowest frictional force and COF in both normal and parallel orientations with overall average COF of 0.43 in normal orientation and 0.42 in parallel orientation. Moreover, the composite with 60 vol% demonstrates the best wear resistance with an overall average specific wear rate of 2.1982 × (Formula presented.) in normal orientation and 4.3478 × ((Formula presented.)) (Formula presented.) in parallel orientation. Overall, this study provides valuable insights into the tribological behavior of Furcraea foetida fiber-reinforced epoxy composites and identifies the optimal volume fractions for improved friction and wear performance. Highlights: Higher vol% yields denser composites with minimized voids. Normal fiber orientation shows maximum SWR of 10.0614 × ((Formula presented.)) (Formula presented.). Optimal frictional force and COF in 50 vol% composite. Enhanced wear resistance observed in 60 vol% composite. Higher vol% increases interfacial bonding and wear resistance in composites. John Wiley and Sons Inc 2023-12 Article PeerReviewed Syed Hussain, Haja and Mohd. Jamir, Mohd. Ridzuan and Abdul Majid, Mohd. Shukry and Salit, Mohd. Sapuan and Ferriawan Yudhanto, Ferriawan Yudhanto and Aris Widyo Nugroho, Aris Widyo Nugroho and Rani, Muhammad Faiz Hilmi (2023) Friction and wear characteristics of Furcraea foetida fiber-reinforced epoxy composites. Polymer Composites, 44 (12). pp. 8559-8577. ISSN 0272-8397 http://dx.doi.org/10.1002/pc.27719 DOI:10.1002/pc.27719 |
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TJ Mechanical engineering and machinery Syed Hussain, Haja Mohd. Jamir, Mohd. Ridzuan Abdul Majid, Mohd. Shukry Salit, Mohd. Sapuan Ferriawan Yudhanto, Ferriawan Yudhanto Aris Widyo Nugroho, Aris Widyo Nugroho Rani, Muhammad Faiz Hilmi Friction and wear characteristics of Furcraea foetida fiber-reinforced epoxy composites |
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In the current study, the friction and wear properties of Furcraea foetida fiber-reinforced epoxy composites were investigated. This study evaluated the effect of Furcraea foetida fiber content on the tribological behavior of composites. A water-retting method was employed to extract the fibers, and resin transfer molding was used to fabricate the composites. The frictional force, coefficient of friction (COF), and wear rate were measured under dry test conditions and various applied loads (80, 100, 120, and 140 N). Microstructural analysis was conducted using scanning electron microscopy to investigate the surface morphology and wear mechanisms of the composites. The results revealed that the composite with 50 vol% of fibers exhibits the lowest frictional force and COF in both normal and parallel orientations with overall average COF of 0.43 in normal orientation and 0.42 in parallel orientation. Moreover, the composite with 60 vol% demonstrates the best wear resistance with an overall average specific wear rate of 2.1982 × (Formula presented.) in normal orientation and 4.3478 × ((Formula presented.)) (Formula presented.) in parallel orientation. Overall, this study provides valuable insights into the tribological behavior of Furcraea foetida fiber-reinforced epoxy composites and identifies the optimal volume fractions for improved friction and wear performance. Highlights: Higher vol% yields denser composites with minimized voids. Normal fiber orientation shows maximum SWR of 10.0614 × ((Formula presented.)) (Formula presented.). Optimal frictional force and COF in 50 vol% composite. Enhanced wear resistance observed in 60 vol% composite. Higher vol% increases interfacial bonding and wear resistance in composites. |
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Syed Hussain, Haja Mohd. Jamir, Mohd. Ridzuan Abdul Majid, Mohd. Shukry Salit, Mohd. Sapuan Ferriawan Yudhanto, Ferriawan Yudhanto Aris Widyo Nugroho, Aris Widyo Nugroho Rani, Muhammad Faiz Hilmi |
author_facet |
Syed Hussain, Haja Mohd. Jamir, Mohd. Ridzuan Abdul Majid, Mohd. Shukry Salit, Mohd. Sapuan Ferriawan Yudhanto, Ferriawan Yudhanto Aris Widyo Nugroho, Aris Widyo Nugroho Rani, Muhammad Faiz Hilmi |
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Syed Hussain, Haja |
title |
Friction and wear characteristics of Furcraea foetida fiber-reinforced epoxy composites |
title_short |
Friction and wear characteristics of Furcraea foetida fiber-reinforced epoxy composites |
title_full |
Friction and wear characteristics of Furcraea foetida fiber-reinforced epoxy composites |
title_fullStr |
Friction and wear characteristics of Furcraea foetida fiber-reinforced epoxy composites |
title_full_unstemmed |
Friction and wear characteristics of Furcraea foetida fiber-reinforced epoxy composites |
title_sort |
friction and wear characteristics of furcraea foetida fiber-reinforced epoxy composites |
publisher |
John Wiley and Sons Inc |
publishDate |
2023 |
url |
http://eprints.utm.my/106460/ http://dx.doi.org/10.1002/pc.27719 |
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1804065504387661824 |
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13.214268 |