Wear and adhesive performance investigation on Co-Ni-Fe coated mild steel / Muhammad Adib Mohd Sabri

Wear and corrosion aspects in material are the main concern in any industrial sectors. Co-Ni-Fe coating can be fabricated by using electrodeposition to produce nanocrystalline materials which exhibit unique properties compared to the microcrystalline counterparts. This study involved the preparation...

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Main Author: Mohd Sabri, Muhammad Adib
Format: Student Project
Language:English
Published: 2017
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Online Access:https://ir.uitm.edu.my/id/eprint/53872/2/53872.PDF
https://ir.uitm.edu.my/id/eprint/53872/
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spelling my.uitm.ir.538722021-12-02T02:21:23Z https://ir.uitm.edu.my/id/eprint/53872/ Wear and adhesive performance investigation on Co-Ni-Fe coated mild steel / Muhammad Adib Mohd Sabri Mohd Sabri, Muhammad Adib Mechanics of engineering. Applied mechanics Applied fluid mechanics Measurements Materials of engineering and construction Physical properties Surface effects and tests Wear and corrosion aspects in material are the main concern in any industrial sectors. Co-Ni-Fe coating can be fabricated by using electrodeposition to produce nanocrystalline materials which exhibit unique properties compared to the microcrystalline counterparts. This study involved the preparation of Co-Ni-Fe coated mild steel by using optimum parameters from previous research. The specimens undergo the phase and element characterization such as X-Ray Diffraction (XRD), scanning electron microscopy (SEM) and Energy-dispersive X-ray spectroscopy (EDX); The surface roughness of the specimen was evaluated before and after the slurry erosion test. The slurry erosion test was carried out in three different speeds which were 500, 1000 and 1500 RPM for 12 hours at 2 hours interval. The pull offload using epoxy adhesive was applied until the failure of the coating. EDX and XRD analysis revealed the Co-Ni- Fe phase without other impurities. At 500 RPM, there was no significant weight loss. At 1000 and 1500 RPM, the weight loss was increased as the time increased. The surface roughness of the coating was increased from 0.159|im to 0.234 pm after wear test rotated at 1500 RPM. In term of adhesion, the pull off test showed the coating did not removed from the substrate. This evident that strong adhesion of the coating contacted with the substrate. In fact, Co-Ni-Fe coating having average thickness of 9.12 pm in term of wear and adhesion can be a significant contribution to industries such as marine, manufacturing and oil and gas sectors where it can enhance the material life span at the same time protect the mild steel substrate from wear attacked. 2017 Student Project NonPeerReviewed text en https://ir.uitm.edu.my/id/eprint/53872/2/53872.PDF ID53872 Mohd Sabri, Muhammad Adib (2017) Wear and adhesive performance investigation on Co-Ni-Fe coated mild steel / Muhammad Adib Mohd Sabri. [Student Project] (Unpublished)
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic Mechanics of engineering. Applied mechanics
Applied fluid mechanics
Measurements
Materials of engineering and construction
Physical properties
Surface effects and tests
spellingShingle Mechanics of engineering. Applied mechanics
Applied fluid mechanics
Measurements
Materials of engineering and construction
Physical properties
Surface effects and tests
Mohd Sabri, Muhammad Adib
Wear and adhesive performance investigation on Co-Ni-Fe coated mild steel / Muhammad Adib Mohd Sabri
description Wear and corrosion aspects in material are the main concern in any industrial sectors. Co-Ni-Fe coating can be fabricated by using electrodeposition to produce nanocrystalline materials which exhibit unique properties compared to the microcrystalline counterparts. This study involved the preparation of Co-Ni-Fe coated mild steel by using optimum parameters from previous research. The specimens undergo the phase and element characterization such as X-Ray Diffraction (XRD), scanning electron microscopy (SEM) and Energy-dispersive X-ray spectroscopy (EDX); The surface roughness of the specimen was evaluated before and after the slurry erosion test. The slurry erosion test was carried out in three different speeds which were 500, 1000 and 1500 RPM for 12 hours at 2 hours interval. The pull offload using epoxy adhesive was applied until the failure of the coating. EDX and XRD analysis revealed the Co-Ni- Fe phase without other impurities. At 500 RPM, there was no significant weight loss. At 1000 and 1500 RPM, the weight loss was increased as the time increased. The surface roughness of the coating was increased from 0.159|im to 0.234 pm after wear test rotated at 1500 RPM. In term of adhesion, the pull off test showed the coating did not removed from the substrate. This evident that strong adhesion of the coating contacted with the substrate. In fact, Co-Ni-Fe coating having average thickness of 9.12 pm in term of wear and adhesion can be a significant contribution to industries such as marine, manufacturing and oil and gas sectors where it can enhance the material life span at the same time protect the mild steel substrate from wear attacked.
format Student Project
author Mohd Sabri, Muhammad Adib
author_facet Mohd Sabri, Muhammad Adib
author_sort Mohd Sabri, Muhammad Adib
title Wear and adhesive performance investigation on Co-Ni-Fe coated mild steel / Muhammad Adib Mohd Sabri
title_short Wear and adhesive performance investigation on Co-Ni-Fe coated mild steel / Muhammad Adib Mohd Sabri
title_full Wear and adhesive performance investigation on Co-Ni-Fe coated mild steel / Muhammad Adib Mohd Sabri
title_fullStr Wear and adhesive performance investigation on Co-Ni-Fe coated mild steel / Muhammad Adib Mohd Sabri
title_full_unstemmed Wear and adhesive performance investigation on Co-Ni-Fe coated mild steel / Muhammad Adib Mohd Sabri
title_sort wear and adhesive performance investigation on co-ni-fe coated mild steel / muhammad adib mohd sabri
publishDate 2017
url https://ir.uitm.edu.my/id/eprint/53872/2/53872.PDF
https://ir.uitm.edu.my/id/eprint/53872/
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score 13.160551