Fire resistant coating composition
A refractory coating and composition technology, applied in the directions of fire retardant coatings, epoxy resin coatings, coatings, etc., can solve the problems of reduced refractory performance and increased gas harmfulness, so as to improve long-term refractory performance and reduce gas harmfulness. Effect
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[0045] After preparing the foamable fire-resistant coating compositions of Examples 1 to 3 and Comparative Examples 1 to 3 with the compositions shown in Table 1 below, the fire-resistant performance and gas hazard were evaluated.
[0046] [Table 1]
[0047] (weight%)
[0048]
[0049] Epoxy resin: Bisphenol A type resin, equivalent weight 182-192g / eq, viscosity 11,000-14,000cps, maximum color 25APHA, maximum hydrolyzable chlorine content 300ppm, weight average molecular weight 100-400
[0050] Curing resin: amide resin, viscosity 300~600cps, color (#G) up to 11, amine value 400~500mgKOH / g, active hydrogen equivalent 50~150g / eq
[0051] Foaming agent: melamine
[0052] Acid Catalyst: Ammonium Polyphosphate
[0053] Phosphorus-based flame retardant #1 (liquid): isopropylated triphenyl phosphate (TPP content > 21% by weight, thermal decomposition temperature less than 250°C (TGA heating loss less than 5%))
[0054] Phosphorus-based flame retardant #2 (liquid): isopropylat...
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