Weatherable flame-retardant coating material for electric facilities
The invention relates to a weatherable flame-retardant coating material for electric facilities. The coating material comprises the following ingredients by weight: 48 to 52 parts of carboxy modified ternary composite vinyl chloride-vinyl acetate resin, 50 to 54 parts of diphenyl-methane-diisocyanat...
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creator | JIAO DAFENG MOU YUNFEI YU XIAOHONG |
description | The invention relates to a weatherable flame-retardant coating material for electric facilities. The coating material comprises the following ingredients by weight: 48 to 52 parts of carboxy modified ternary composite vinyl chloride-vinyl acetate resin, 50 to 54 parts of diphenyl-methane-diisocyanate, 46 to 50 parts of acrylic acid, 50 to 54 parts of mica powder, 46 to 50 parts of PVC resin powder, 50 to 54 parts of a polyurethane copolymer, 46 to 50 parts of diphenyl guanidine zinc-rich epoxy powder, 52 to 56 parts of tricresyl phosphate, 46 to 50 parts of aluminum hydroxide, 50 to 54 parts of ceramic clinker powder, 46 to 50 parts of polyamide, 50 to 54 parts of phenothiazine, 46 to 50 parts of zircon powder, 50 to 54 parts of chloroplatinic acid, 46 to 50 parts of rutile powder, 50 to 54 parts of di-maleimide, 46 to 50 parts of SBS modified asphalt, 50 to 54 parts of vinyl silicon resin, 46 to 50 parts of ammonium polyphosphate, and 50 to 54 parts of hexamethylenetetramine. The coating material is relatively high in weatherability, fire resistance, flame retardancy, and insulating property, thereby being suitable for the field of electric facilities. |
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The coating material comprises the following ingredients by weight: 48 to 52 parts of carboxy modified ternary composite vinyl chloride-vinyl acetate resin, 50 to 54 parts of diphenyl-methane-diisocyanate, 46 to 50 parts of acrylic acid, 50 to 54 parts of mica powder, 46 to 50 parts of PVC resin powder, 50 to 54 parts of a polyurethane copolymer, 46 to 50 parts of diphenyl guanidine zinc-rich epoxy powder, 52 to 56 parts of tricresyl phosphate, 46 to 50 parts of aluminum hydroxide, 50 to 54 parts of ceramic clinker powder, 46 to 50 parts of polyamide, 50 to 54 parts of phenothiazine, 46 to 50 parts of zircon powder, 50 to 54 parts of chloroplatinic acid, 46 to 50 parts of rutile powder, 50 to 54 parts of di-maleimide, 46 to 50 parts of SBS modified asphalt, 50 to 54 parts of vinyl silicon resin, 46 to 50 parts of ammonium polyphosphate, and 50 to 54 parts of hexamethylenetetramine. 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The coating material comprises the following ingredients by weight: 48 to 52 parts of carboxy modified ternary composite vinyl chloride-vinyl acetate resin, 50 to 54 parts of diphenyl-methane-diisocyanate, 46 to 50 parts of acrylic acid, 50 to 54 parts of mica powder, 46 to 50 parts of PVC resin powder, 50 to 54 parts of a polyurethane copolymer, 46 to 50 parts of diphenyl guanidine zinc-rich epoxy powder, 52 to 56 parts of tricresyl phosphate, 46 to 50 parts of aluminum hydroxide, 50 to 54 parts of ceramic clinker powder, 46 to 50 parts of polyamide, 50 to 54 parts of phenothiazine, 46 to 50 parts of zircon powder, 50 to 54 parts of chloroplatinic acid, 46 to 50 parts of rutile powder, 50 to 54 parts of di-maleimide, 46 to 50 parts of SBS modified asphalt, 50 to 54 parts of vinyl silicon resin, 46 to 50 parts of ammonium polyphosphate, and 50 to 54 parts of hexamethylenetetramine. 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The coating material comprises the following ingredients by weight: 48 to 52 parts of carboxy modified ternary composite vinyl chloride-vinyl acetate resin, 50 to 54 parts of diphenyl-methane-diisocyanate, 46 to 50 parts of acrylic acid, 50 to 54 parts of mica powder, 46 to 50 parts of PVC resin powder, 50 to 54 parts of a polyurethane copolymer, 46 to 50 parts of diphenyl guanidine zinc-rich epoxy powder, 52 to 56 parts of tricresyl phosphate, 46 to 50 parts of aluminum hydroxide, 50 to 54 parts of ceramic clinker powder, 46 to 50 parts of polyamide, 50 to 54 parts of phenothiazine, 46 to 50 parts of zircon powder, 50 to 54 parts of chloroplatinic acid, 46 to 50 parts of rutile powder, 50 to 54 parts of di-maleimide, 46 to 50 parts of SBS modified asphalt, 50 to 54 parts of vinyl silicon resin, 46 to 50 parts of ammonium polyphosphate, and 50 to 54 parts of hexamethylenetetramine. The coating material is relatively high in weatherability, fire resistance, flame retardancy, and insulating property, thereby being suitable for the field of electric facilities.</abstract><oa>free_for_read</oa></addata></record> |
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subjects | ADHESIVES CHEMICAL PAINT OR INK REMOVERS CHEMISTRY COATING COMPOSITIONS, e.g. PAINTS, VARNISHES ORLACQUERS CORRECTING FLUIDS DYES FILLING PASTES INKS METALLURGY MISCELLANEOUS APPLICATIONS OF MATERIALS MISCELLANEOUS COMPOSITIONS NATURAL RESINS PAINTS PASTES OR SOLIDS FOR COLOURING OR PRINTING POLISHES USE OF MATERIALS THEREFOR WOODSTAINS |
title | Weatherable flame-retardant coating material for electric facilities |
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