A Study of Bonding Mechanism of Expandable Graphite Based Intumescent Coating on Steel Substrate
Intumescent coating is an insulating system designed to decrease heat transfer from a fire to substrate structure to maintain its integrity. Zinc phosphate was used as primer coating on steel coupons for better protection from corrosion. The coating was based on Expandable graphite (EG), ammonium p...
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2011
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my.utp.eprints.74072014-03-28T13:22:24Z A Study of Bonding Mechanism of Expandable Graphite Based Intumescent Coating on Steel Substrate Megat-Yusoff, Puteri Sri Melor Ullah, Sami Faiz , Ahmad Azmi, Nurul Hazwani TA Engineering (General). Civil engineering (General) Intumescent coating is an insulating system designed to decrease heat transfer from a fire to substrate structure to maintain its integrity. Zinc phosphate was used as primer coating on steel coupons for better protection from corrosion. The coating was based on Expandable graphite (EG), ammonium poly phosphate (APP), boric acid (B.A), bisphenol A (BPA) and tetraethylene tetramine (TETA). Different formulations were developed to study the bonding of coating with Steel substrate. The Intumescent coating was tested at 500oC for one hour and it was found very stable and well bound with the steel substrate. Scanning Electron Microscope was used to study microstructure the substrate and bonding mechanism of coating with substrate after fire test. The results confirmed that coating was well bounded with steel substrate after fire test. Asian Network for Scientific Information 2011 Article PeerReviewed http://scialert.net/previous.php?issn=1812-5654 Megat-Yusoff, Puteri Sri Melor and Ullah, Sami and Faiz , Ahmad and Azmi, Nurul Hazwani (2011) A Study of Bonding Mechanism of Expandable Graphite Based Intumescent Coating on Steel Substrate. Journal of Applied Sciences, 11 (9). pp. 1630-1635. ISSN 18125654 http://eprints.utp.edu.my/7407/ |
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TA Engineering (General). Civil engineering (General) Megat-Yusoff, Puteri Sri Melor Ullah, Sami Faiz , Ahmad Azmi, Nurul Hazwani A Study of Bonding Mechanism of Expandable Graphite Based Intumescent Coating on Steel Substrate |
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Intumescent coating is an insulating system designed to decrease heat transfer from a fire to substrate structure to maintain its integrity. Zinc phosphate was used as primer coating on steel coupons for better protection from corrosion. The coating was based on Expandable graphite (EG), ammonium poly phosphate (APP), boric acid (B.A), bisphenol A (BPA) and tetraethylene tetramine (TETA). Different formulations were developed to study the bonding of coating with Steel substrate. The Intumescent coating was tested at 500oC for one hour and it was found very stable and well bound with the steel substrate. Scanning Electron Microscope was used to study microstructure the substrate and bonding mechanism of coating with substrate after fire test. The results confirmed that coating was well bounded with steel substrate after fire test. |
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Article |
author |
Megat-Yusoff, Puteri Sri Melor Ullah, Sami Faiz , Ahmad Azmi, Nurul Hazwani |
author_facet |
Megat-Yusoff, Puteri Sri Melor Ullah, Sami Faiz , Ahmad Azmi, Nurul Hazwani |
author_sort |
Megat-Yusoff, Puteri Sri Melor |
title |
A Study of Bonding Mechanism of Expandable Graphite Based Intumescent Coating on Steel Substrate |
title_short |
A Study of Bonding Mechanism of Expandable Graphite Based Intumescent Coating on Steel Substrate |
title_full |
A Study of Bonding Mechanism of Expandable Graphite Based Intumescent Coating on Steel Substrate |
title_fullStr |
A Study of Bonding Mechanism of Expandable Graphite Based Intumescent Coating on Steel Substrate |
title_full_unstemmed |
A Study of Bonding Mechanism of Expandable Graphite Based Intumescent Coating on Steel Substrate |
title_sort |
study of bonding mechanism of expandable graphite based intumescent coating on steel substrate |
publisher |
Asian Network for Scientific Information |
publishDate |
2011 |
url |
http://scialert.net/previous.php?issn=1812-5654 http://eprints.utp.edu.my/7407/ |
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1738655574415900672 |
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13.214268 |