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'quality fire retardants'

Items tagged with 'quality fire retardants'

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Antimony Trioxide

Our range of Antimony trioxide is produced from stibnite ores (antimony trisulfide) or as a by-product of lead smelting and production. Antimony Trioxide is used mainly in fire retardant formulations for plastics, rubbers, textiles, paper and paints. Further, Antimony Trioxide can be used as an additive in glass and ceramic products and as a catalyst in the chemical industry. Occupational exposure may occur during mining, processing and smelting of antimony ores, in glass and ceramics production, and during the manufacture and use of products containing antimony trioxide. Antimony trioxide and pentoxide do not react as flame-retardants directly. Antimony Trioxide are used as synergists to enhance the activity of halogenated flame-retardants by stepwise releasing the halogenated radicals to retard gas phase chain reaction of flame spread. Applications: Flame retardant for wide range of plastics, rubbers, paper and textiles Catalyst in PET production Activator in glass industry Flocculant in Titanium Dioxide production Paints and Adhesives industries Pigments, Ceramic frites Features: In flame retarding thermoplastics, the synergistic action between halogenated flame-retardants and antimony trioxide is well known in the plastic industry The Izod impact strength and translucency are two key properties that are diminished because of the particle size and pigmentation strength of antimony trioxide The loss in translucency limits the range of available color choices because of the high loading required to offset the tinting effect of antimony trioxide

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Aluminium Hydroxide

ALUMINIUM HYDROXIDE is a Super Fine Precipitated Special ATH. Finely Precipitated Special ATH is one of the Largest Consumed Flame Retardants & Smoke suppressants across the World by volumes in various applications. It is an environment-friendly and non-toxic mineral-based flame retardant. Large volumes of finely precipitatedATH are used in plastics and rubber compounding for imparting flame retardancy along with smoke suppression properties making it an effective smoke suppressant and flame retardant. Its extremely uniform, controlled and narrow particle size distribution results .in improved compounding performance, better powder flowability, higher dosage capability, improved extrusion speed, and better thermal stability along with better output and finishing of the end product. TYPICAL CHEMICAL ANALYSIS:- PROPERTIES ANALYSIS A1(OH)3 99.6Max A12O3 64.5%Min FE2O3 0.001Max SiO2 0.001% Na2O 0.09% Max (Soluble) TYPICAL PHYSICAL PROPERTIES:- PROPERTIES ANALYSIS Whiteness 95.00% Min Specific Gravity 2.40+=0.02 Loss On Ignition 34.50% Max (1100 Deg C) Moisture Content 0.40% Max (105 Deg C) Bulk Density 0.40-0.45 gram/cc (Untapped) Sieve Analysis Nil (at 325 Mesh) Average Particle Size 1.7 -2.20 Mic (d50 By Laser Diffraction) Coating Silane/ Stearic acid

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Zinc Borate

ZINC BORATE is a highly effective multifunctional flame retardant synergist being used as a flame retardant and smoke suppressant in a wide range of applications. It is an environment friendly flame retardant as it is non toxic in nature and does not generate any toxic/corrosive gases. It is used in plastics, rubber, textile, paint, adhesive, pigments and ceramic industries. Zinc Borate also replaces Antimony Trioxide & Decabromodiphenyl Ether partially (or even completely) in various plastics and rubber applications. Zinc Borate is also known as ZB2335, Borate Flame Retardant, and Fire Break Zinc Borate. TYPICAL CHEMICAL ANALYSIS:- PROPERTIES ANALYSIS ZnO Content 37.5+=1.50% (By Weight) B2O3 Content 48.00+=1.50% (By Weight) TYPICAL PHYSICAL PROPERTIES:- PROPERTIES ANALYSIS Appearance Fine White Powder Specific Gravity 2.70+=0.15% Sieve Residue (at 325 Mesh) Nil Loss on Ignition 14.5+=1.5% (45 Deg C) Moisture Content 0.40% Max Average Particle Size (d50 By Laser Diffraction) 20.-3.0Mic

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