4.7 Article

Thermal shielding performances of nano-structured intumescent coatings containing organo-modified layered double hydroxides

期刊

PROGRESS IN ORGANIC COATINGS
卷 78, 期 -, 页码 504-510

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.porgcoat.2014.06.011

关键词

Intumescent coatings; Layered double hydroxides; Thermal shielding performance; Cone calorimetry

资金

  1. European Community (HEFEST Project) [222263 FP7-SME-2007-1]
  2. Reserve Talents of Universities Overseas Research Program of Heilongjiang

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Cone calorimetry tests performed at 50 kW/m(2) heat flux have been exploited for assessing the fire resistant properties of nano-structured intumescent coatings containing modified layered double hydroxides (hydrotalcites, LDHs) and deposited on steel plates. The effects of different types of modified hydrotalcites (i.e. magnesium-aluminum lactate hydrotalcite, magnesium-aluminum gluconate hydrotalcite, magnesium-aluminum hydrotalcite modified with a fatty acid, magnesium-aluminum hydrotalcite modified with rosin) on the thermal shielding performances of the intumescent coatings and their intumescent degree have been thoroughly discussed and compared with the pristine unfilled counterparts. More specifically, the coatings containing organo-modified LDHs showed better thermal shielding performances with respect to the reference intumescent coating; on the contrary, the use of unmodified hydrotalcite in the intumescent formulations was found detrimental. The thermal shielding performances of the coatings filled with modified LDHs were found to be strictly related to the intumescent degree developed during the cone calorimetry tests. In addition, it was possible to compare the thermal shielding performances of the nanofilled coatings by evaluating the temperatures achieved after 2000 s exposure to the 50 kW/m(2) heat flux of the cone: the thermal shielding performance sequence was LDH-GL>LDH-RS>LDH-LA>LDH-FA>LDH). Finally, the intumescent degree of the modified coatings was found to decrease with increasing the hydrotalcite content, hence lowering their thermal shielding performances. (C) 2014 Elsevier B.V. All rights reserved.

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