A characterization of tung oil-filled Urea-Formaldehyde microcapsules and their effect on mechanical properties of an epoxy-based coating

The development of smart coatings with possible for active anticorrosion and self-healing protection of metals is essential for long-term performance of metallic structures in marine environments. In this study, tung oil-filled Poly-Urea-Formaldehyde (PUF) capsules were created utilising in-situ pol...

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Main Authors: Mamat, Mohd. Fauzi, Dollah, Nur Nadirah, Ismail, Mohamad Safwan, Anand, Joseph Sahaya, Paijan, Lailatul Harina, Zainal Abidin, Muhammad Zaimi, Ab. Majid, Rohah
Format: Article
Language:English
Published: Microscopy Society of Malaysia (MSM) 2023
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Online Access:http://eprints.utm.my/105433/1/RohahAbMajid2023_ACharacterizationofTungOilFilledUrea.pdf
http://eprints.utm.my/105433/
https://malaysianjournalofmicroscopy.org/ojs/index.php/mjm/article/view/754
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spelling my.utm.1054332024-04-28T09:22:26Z http://eprints.utm.my/105433/ A characterization of tung oil-filled Urea-Formaldehyde microcapsules and their effect on mechanical properties of an epoxy-based coating Mamat, Mohd. Fauzi Dollah, Nur Nadirah Ismail, Mohamad Safwan Anand, Joseph Sahaya Paijan, Lailatul Harina Zainal Abidin, Muhammad Zaimi Ab. Majid, Rohah Q Science (General) The development of smart coatings with possible for active anticorrosion and self-healing protection of metals is essential for long-term performance of metallic structures in marine environments. In this study, tung oil-filled Poly-Urea-Formaldehyde (PUF) capsules were created utilising in-situ polymerization, and 7.5 wt.% of synthesized microcapsules were combined with commercial epoxy paint. The poly-urea-formaldehyde (PUF) microcapsules with linseed oil encapsulation had a core content of about 80 % and a diameter of 180 µm. Self-healing coatings were realized by the releasing of tung oil from microcapsules under the scarp area. Tung oil has excellent film-forming property when they contact with oxygen, self-healing anti-corrosion properties. The performance of the self-healing coating was examined through immersion testing in 3.5 wt% medium for 7, 14, 21, 28 and 35 days. The microcapsule, self-healing capability, and surface morphology of the substrate following the corrosion test were all characterised using scanning electron microscopy (SEM), energy dispersive spectroscopy (EDS), weight loss, and corrosion rate methods. The experimental result indicate that the scratched of self-healing coating samples were able to resist corrosion behavior in salt solution thus, the microcapsules can be used to significantly extend the service life of the coatings. Compared to uncoated and epoxy coating, the self-healing coating exhibits superior anticorrosive capabilities after immersion testing. A more profound knowledge of the self-healing process to extend life could result from this research. Microscopy Society of Malaysia (MSM) 2023-05-01 Article PeerReviewed application/pdf en http://eprints.utm.my/105433/1/RohahAbMajid2023_ACharacterizationofTungOilFilledUrea.pdf Mamat, Mohd. Fauzi and Dollah, Nur Nadirah and Ismail, Mohamad Safwan and Anand, Joseph Sahaya and Paijan, Lailatul Harina and Zainal Abidin, Muhammad Zaimi and Ab. Majid, Rohah (2023) A characterization of tung oil-filled Urea-Formaldehyde microcapsules and their effect on mechanical properties of an epoxy-based coating. Malaysian Journal of Microscopy, 19 (1). pp. 307-318. ISSN 1823-7010 https://malaysianjournalofmicroscopy.org/ojs/index.php/mjm/article/view/754 NA
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic Q Science (General)
spellingShingle Q Science (General)
Mamat, Mohd. Fauzi
Dollah, Nur Nadirah
Ismail, Mohamad Safwan
Anand, Joseph Sahaya
Paijan, Lailatul Harina
Zainal Abidin, Muhammad Zaimi
Ab. Majid, Rohah
A characterization of tung oil-filled Urea-Formaldehyde microcapsules and their effect on mechanical properties of an epoxy-based coating
description The development of smart coatings with possible for active anticorrosion and self-healing protection of metals is essential for long-term performance of metallic structures in marine environments. In this study, tung oil-filled Poly-Urea-Formaldehyde (PUF) capsules were created utilising in-situ polymerization, and 7.5 wt.% of synthesized microcapsules were combined with commercial epoxy paint. The poly-urea-formaldehyde (PUF) microcapsules with linseed oil encapsulation had a core content of about 80 % and a diameter of 180 µm. Self-healing coatings were realized by the releasing of tung oil from microcapsules under the scarp area. Tung oil has excellent film-forming property when they contact with oxygen, self-healing anti-corrosion properties. The performance of the self-healing coating was examined through immersion testing in 3.5 wt% medium for 7, 14, 21, 28 and 35 days. The microcapsule, self-healing capability, and surface morphology of the substrate following the corrosion test were all characterised using scanning electron microscopy (SEM), energy dispersive spectroscopy (EDS), weight loss, and corrosion rate methods. The experimental result indicate that the scratched of self-healing coating samples were able to resist corrosion behavior in salt solution thus, the microcapsules can be used to significantly extend the service life of the coatings. Compared to uncoated and epoxy coating, the self-healing coating exhibits superior anticorrosive capabilities after immersion testing. A more profound knowledge of the self-healing process to extend life could result from this research.
format Article
author Mamat, Mohd. Fauzi
Dollah, Nur Nadirah
Ismail, Mohamad Safwan
Anand, Joseph Sahaya
Paijan, Lailatul Harina
Zainal Abidin, Muhammad Zaimi
Ab. Majid, Rohah
author_facet Mamat, Mohd. Fauzi
Dollah, Nur Nadirah
Ismail, Mohamad Safwan
Anand, Joseph Sahaya
Paijan, Lailatul Harina
Zainal Abidin, Muhammad Zaimi
Ab. Majid, Rohah
author_sort Mamat, Mohd. Fauzi
title A characterization of tung oil-filled Urea-Formaldehyde microcapsules and their effect on mechanical properties of an epoxy-based coating
title_short A characterization of tung oil-filled Urea-Formaldehyde microcapsules and their effect on mechanical properties of an epoxy-based coating
title_full A characterization of tung oil-filled Urea-Formaldehyde microcapsules and their effect on mechanical properties of an epoxy-based coating
title_fullStr A characterization of tung oil-filled Urea-Formaldehyde microcapsules and their effect on mechanical properties of an epoxy-based coating
title_full_unstemmed A characterization of tung oil-filled Urea-Formaldehyde microcapsules and their effect on mechanical properties of an epoxy-based coating
title_sort characterization of tung oil-filled urea-formaldehyde microcapsules and their effect on mechanical properties of an epoxy-based coating
publisher Microscopy Society of Malaysia (MSM)
publishDate 2023
url http://eprints.utm.my/105433/1/RohahAbMajid2023_ACharacterizationofTungOilFilledUrea.pdf
http://eprints.utm.my/105433/
https://malaysianjournalofmicroscopy.org/ojs/index.php/mjm/article/view/754
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score 13.160551