Self healing polyester-graphene primer coating via microcapsule on its mechanical, adhesion and corossion properties / Siti Adlina Syahira Mohd Khamsi
Microcapsules was successfully synthesized by in-situ polymerization prepared for unsaturated polyester filled graphene for primer application. The objective ofthis study, was to investigate the mechanical, adhesion and corrosion properties with different graphene loading (0%, 1%, 3% and 5%) filled...
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my-uitm-ir.346232020-09-29T08:01:40Z Self healing polyester-graphene primer coating via microcapsule on its mechanical, adhesion and corossion properties / Siti Adlina Syahira Mohd Khamsi 2020-09-24 Mohd Khamsi, Siti Adlina Syahira Carbon disulfide. Graphene. Carbon Inorganic polymers Physical and theoretical chemistry Microcapsules was successfully synthesized by in-situ polymerization prepared for unsaturated polyester filled graphene for primer application. The objective ofthis study, was to investigate the mechanical, adhesion and corrosion properties with different graphene loading (0%, 1%, 3% and 5%) filled in unsaturated polyester and to determine the self healing properties via microcapsules on the unsaturated polyester-graphene coating for primer coating application with different microcapsules loading (1, 3 and 5wt%). Mechanical properties that conducted was hardness test, while for adhesion properties testing are pull out test and contact angle measurement. The corrosion properties that was investigate are immersion test and Tafel polarization method. For hardness test, the result obtain 4H regardless the loading of graphene. Pull out test has been observed for UPE-GR and UPE-GR/MC shows the same adhesion strength because of addition graphene that have high properties and it does not affect during the adhesion testing. The immersion testing was immersed in two different medium which is 5wt% NaCl and seawater solution. The lowest corrosion occur on the 5% UPE-GR/MC because of high microcapsules loading because the microcapsules scratch at the ‘X’ marks. The Tafel Polarization method was also conducted to determine the corrosion rate and polarization resistance. The corrosion rate are inversely proportional so, when the corrosion rate high, the polarization resistance will low. 3%UPE-GR/MC gives the lowest corrosion rate 0.268mmpy and the polarization resistance are 186.96Ω. As for conclusion, the incorporation of self healing polyester-graphene into the primer coating improve mechanical, adhesion and corrosive properties and the optimum coating found was at 3%UPE-GR/MC. 2020-09 Thesis https://ir.uitm.edu.my/id/eprint/34623/ https://ir.uitm.edu.my/id/eprint/34623/1/34623.pdf text en public degree Universiti Teknologi MARA Perlis Faculty of Applied Sciences |
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Carbon disulfide Graphene Carbon Inorganic polymers Physical and theoretical chemistry |
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Carbon disulfide Graphene Carbon Inorganic polymers Physical and theoretical chemistry Mohd Khamsi, Siti Adlina Syahira Self healing polyester-graphene primer coating via microcapsule on its mechanical, adhesion and corossion properties / Siti Adlina Syahira Mohd Khamsi |
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Microcapsules was successfully synthesized by in-situ polymerization prepared for unsaturated polyester filled graphene for primer application. The objective ofthis study, was to investigate the mechanical, adhesion and corrosion properties with different graphene loading (0%, 1%, 3% and 5%) filled in unsaturated polyester and to determine the self healing properties via microcapsules on the unsaturated polyester-graphene coating for primer coating application with different microcapsules loading (1, 3 and 5wt%). Mechanical properties that conducted was hardness test, while for adhesion properties testing are pull out test and contact angle measurement. The corrosion properties that was investigate are immersion test and Tafel polarization method. For hardness test, the result obtain 4H regardless the loading of graphene. Pull out test has been observed for UPE-GR and UPE-GR/MC shows the same adhesion strength because of addition graphene that have high properties and it does not affect during the adhesion testing. The immersion testing was immersed in two different medium which is 5wt% NaCl and seawater solution. The lowest corrosion occur on the 5% UPE-GR/MC because of high microcapsules loading because the microcapsules scratch at the ‘X’ marks. The Tafel Polarization method was also conducted to determine the corrosion rate and polarization resistance. The corrosion rate are inversely proportional so, when the corrosion rate high, the polarization resistance will low. 3%UPE-GR/MC gives the lowest corrosion rate 0.268mmpy and the polarization resistance are 186.96Ω. As for conclusion, the incorporation of self healing polyester-graphene into the primer coating improve mechanical, adhesion and corrosive properties and the optimum coating found was at 3%UPE-GR/MC. |
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Thesis |
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Bachelor degree |
author |
Mohd Khamsi, Siti Adlina Syahira |
author_facet |
Mohd Khamsi, Siti Adlina Syahira |
author_sort |
Mohd Khamsi, Siti Adlina Syahira |
title |
Self healing polyester-graphene primer coating via microcapsule on its mechanical, adhesion and corossion properties / Siti Adlina Syahira Mohd Khamsi |
title_short |
Self healing polyester-graphene primer coating via microcapsule on its mechanical, adhesion and corossion properties / Siti Adlina Syahira Mohd Khamsi |
title_full |
Self healing polyester-graphene primer coating via microcapsule on its mechanical, adhesion and corossion properties / Siti Adlina Syahira Mohd Khamsi |
title_fullStr |
Self healing polyester-graphene primer coating via microcapsule on its mechanical, adhesion and corossion properties / Siti Adlina Syahira Mohd Khamsi |
title_full_unstemmed |
Self healing polyester-graphene primer coating via microcapsule on its mechanical, adhesion and corossion properties / Siti Adlina Syahira Mohd Khamsi |
title_sort |
self healing polyester-graphene primer coating via microcapsule on its mechanical, adhesion and corossion properties / siti adlina syahira mohd khamsi |
granting_institution |
Universiti Teknologi MARA Perlis |
granting_department |
Faculty of Applied Sciences |
publishDate |
2020 |
url |
https://ir.uitm.edu.my/id/eprint/34623/1/34623.pdf |
_version_ |
1783734276536139776 |