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The invention provides a novel process for coating fireproof paint compositions for buildings. The novel process is characterized in that the fireproof paint compositions are coated on the surfaces of building structures, the thickness of a coated film in each procedure is 1 mm, the film coating interval is 4 hours in each procedure, and the fireproof paint compositions are naturally dried in room-temperature environments for 48 hours after the requirement on the thicknesses of the coated films are met. The paint compositions comprise acrylic ester-styrene-vinyl acetate terpolymers, self-emulsification epoxy resin, red phosphorus, aluminum triphosphate, melamine, expandable graphite, glycerin, alkyl phenol polyoxyethylene sulfonate, ferric oxide hydrate, metatitanic acid, Na<2>O SiO<2> H<2>O and water. The novel process has the advantages that fireproof paint for the buildings is excellent in comprehensive performance owing to unique component selection, the optimal component ratios the adaptive process, and is excellent in integral performance such as fireproof and waterproof properties, weather fastness and aesthetics.
The invention provides a novel process for coating fireproof paint compositions for buildings. The novel process is characterized in that the fireproof paint compositions are coated on the surfaces of building structures, the thickness of a coated film in each procedure is 1 mm, the film coating interval is 4 hours in each procedure, and the fireproof paint compositions are naturally dried in room-temperature environments for 48 hours after the requirement on the thicknesses of the coated films are met. The paint compositions comprise acrylic ester-styrene-vinyl acetate terpolymers, self-emulsification epoxy resin, red phosphorus, aluminum triphosphate, melamine, expandable graphite, glycerin, alkyl phenol polyoxyethylene sulfonate, ferric oxide hydrate, metatitanic acid, Na<2>O SiO<2> H<2>O and water. The novel process has the advantages that fireproof paint for the buildings is excellent in comprehensive performance owing to unique component selection, the optimal component ratios the adaptive process, and is excellent in integral performance such as fireproof and waterproof properties, weather fastness and aesthetics.
Process for coating fireproof paint for buildings
LIU SHIDI (author)
2016-01-06
Patent
Electronic Resource
English
European Patent Office | 2020
|Engineering Index Backfile | 1898
|Engineering Index Backfile | 1898
|Engineering Index Backfile | 1897
European Patent Office | 2020
|