4.6 Article

Effect of expandable graphite and ammonium polyphosphate on the thermal degradation and weathering of intumescent fire-retardant coating

期刊

JOURNAL OF APPLIED POLYMER SCIENCE
卷 138, 期 17, 页码 -

出版社

WILEY
DOI: 10.1002/app.50310

关键词

ammonium polyphosphate; expandable graphite; intumescent fire retardant coating; weathering test; XPS analysis

资金

  1. Ministry of Higher Education (MOHE), Malaysia [FRGS-015MAO-081]
  2. King Khalid University [GRP 101-42]

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The research demonstrates the significant effects of ammonium polyphosphate and expandable graphite on intumescent coating, particularly in terms of residual mass and chemical composition. The residual char after fire test shows good stability and adhesion. Weathering test reveals that the expansion of coating residue is affected by humid environment and UV light.
This research aims to study the effect of ammonium polyphosphate and expandable graphite on the intumescent coating formulations (ICF). The coating presented in this research article is based on carbon source expandable graphite (EG), blowing agent melamine, acid source ammonium polyphosphate (APP), epoxy resin as a binder with polyamide amine. The stability of the developed coating was verified at 950 degrees C for 1-hour fire test. The results showed that the coating is stable and well bond with the steel substrate. The char was characterized by using FESEM, XRD, FTIR, DTA, TGA, XPS, Py-GCMS and Weathering Test. The morphology of the char was studied by SEM of the coating after furnace fire test. XRD and FTIR show the presence of graphite, borophosphate; boron oxide and sassolite in the residual char. TGA and DTG disclosed that EG improved the residual mass of coating. XPS analysis showed the char residue of IF5-APP-EG contains carbon and oxygen contents 47.50 and 40.70, respectively. Py-GCMS analysis described that the IF5-APP-EG released less gaseous compounds. The weathering test illustrated that's the char expansion of coatings samples was decreased due to the presence of a humid environment and UV light. The IF5-APP-EG showed the maximum char expansion, lower substrate temperature and high residual weight among the studied formulations.

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