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Experimental study of hydrothermal aging effects on insulative properties of intumescent coating for steel elements

L, Wang L; C, Wang Y; Q, Li G

Fire Safety Journal. 2013;55:168-181.

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Abstract

This paper reports the results of an experimental study of degradation in fire protection performance of two types of intumescent coating after different cycles of accelerated hydrothermal aging tests. Intumescent coating (without top coating) was applied to steel plate to make a test specimen. After subjecting the specimen to the aging test, fire test was carried out to obtain the steel plate temperature. In order to help understand the aging mechanism of intumescent coating, TGA tests, XPS tests and FTIR tests were also conducted on the intumescent coating after the accelerated aging test. In total, tests were performed on 56 intumescent coating protected steel specimens, of which 16 specimens were applied with type-U intumescent coating and the other 40 with type-A intumescent coating. Results of the degradation mechanism study reveal that the hydrophilic components of intumescent coating move to the surface of the coating and can be dissolved by moisture in the air, which can destroy the intended chemical reactions of these components with others and deter formation of the desired effective intumescent char. The consequence of this is reduced expansion of the intumescent coating and increased effective thermal conductivity. Compared to specimens without hydrothermal aging, after 42 cycles of hydrothermal aging (to simulate 20 years of exposure to an assumed exposure environment), the effective thermal conductivity of type-U intumescent coating was 50% higher and that of type-A intumescent coating 100% higher than that of the fresh coating. These increases in effective thermal conductivities resulted in increases in steel temperatures of up to 150 1C and 220 1C higher than the steel temperatures of the specimens without hydrothermal aging for the type-U intumescent coating and type-A intumescent coating specimens, respectively.

Bibliographic metadata

Type of resource:
Content type:
Publication status:
Accepted
Publication type:
Published date:
Language:
eng
Journal title:
ISSN:
Publisher:
Volume:
55
Start page:
168
End page:
181
Total:
13
Pagination:
168-181
Digital Object Identifier:
http://dx.doi.org/10.1016/j.firesaf.2012.10.004
Attached files embargo period:
Immediate release
Attached files release date:
27th January, 2015
Access state:
Active

Institutional metadata

University researcher(s):

Record metadata

Manchester eScholar ID:
uk-ac-man-scw:253829
Created by:
Wang, Yong
Created:
27th January, 2015, 14:48:55
Last modified by:
Wang, Yong
Last modified:
27th January, 2015, 14:48:55

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