Nano composite expansion flame-retardant polyurethane foam plastic and preparation thereof
A foam, expansion flame-retardant technology, applied in the field of flame-retardant polyurethane foam, can solve the problems of poor physical properties, large amounts of inorganic flame retardants added to the human body and the environment, etc., to reduce physical properties, reduce heat release rate and total The effect of heat release and overcoming low flame retardant efficiency
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Embodiment 1
[0017] 1 kg of polyethylene glycol with a hydroxyl value of 400 mgKOH / g, 0.15 kg of expandable graphite with a particle size of 100 meshes, 0.06 kg of industrial grade DMMP (dimethyl methyl phosphonate), 0.015 kg of organically modified zirconium phosphate, and purified water 0.02 kg, 0.03 kg of polydimethylsiloxane, 0.015 kg of triethylenediamine and 0.015 kg of dibutyltin dilaurate are mixed, stirred at 1000 rpm for 1 second, and then mixed with 1 kg of isocyanate content (NCO%) is 31wt% thick MDI (diphenylmethane diisocyanate) after mixing, stirs 20 seconds with 1000 rev / min rotating speeds in a large container at 25 ℃, then pours into the mold quickly, after 5 minutes It can be cured and molded, and the obtained product is nanocomposite expanded flame-retardant rigid polyurethane foam.
[0018] The above-mentioned nanocomposite intumescent flame-retardant rigid polyurethane foam can reach the UL-94V-0 level in the vertical burning test, its limit sample index value reaches...
Embodiment 2
[0030] 1 kg of polyethylene glycol with a hydroxyl value of 400 mgKOH / g, 0.141 kg of expandable graphite with a particle size of 100 mesh, 0.0565 kg of industrial grade DMMP, 0.0275 kg of organically modified zirconium phosphate, 0.02 kg of purified water, polydimethylsiloxane After 0.03 kilogram of oxane, 0.015 kilogram of triethylenediamine and 0.015 kilogram of dibutyltin dilaurate were mixed, after stirring for 1 second at a speed of 1000 rpm, it was mixed with 1 kilogram of isocyanate content (NCO%) of 31wt% crude After mixing MDI, stir it in a large container at 1000 rpm for 20 seconds at 25°C, then quickly pour it into the mold, and it can be solidified and formed after 5 minutes. The obtained product is nanocomposite expanded flame-retardant rigid polyurethane foam. plastic.
[0031] This nanocomposite expanded flame retardant rigid polyurethane foam can pass the UL-94V-0 test, the oxygen index is 34, and its maximum heat release rate is 211.8w / g, which is 39.1% lower ...
Embodiment 3
[0038] 1 kg of polyethylene glycol with a hydroxyl value of 400 mgKOH / g, 0.159 kg of expandable graphite with a particle size of 100 mesh, 0.0635 kg of industrial grade DMMP, 0.0025 kg of organically modified zirconium phosphate, 0.02 kg of purified water, polydimethylsiloxane After mixing 0.03 kg of alkane, 0.015 kg of triethylenediamine and 0.015 kg of dibutyltin dilaurate, after stirring for 1 second at a speed of 1000 rpm, it was mixed with 1 kg of isocyanate content (NCO%) of 31 wt% crude After mixing MDI, stir it in a large container at 1000 rpm for 20 seconds at 25°C, then quickly pour it into the mold, and it can be solidified and formed after 5 minutes. The obtained product is nanocomposite expanded flame-retardant rigid polyurethane foam. plastic.
[0039] This nanocomposite expanded flame retardant rigid polyurethane foam can pass the UL-94V-0 test, the oxygen index is 36, and its maximum heat release rate is 205.1w / g, which is 41.1% lower than that of pure rigid po...
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