High-flame retardant rigid polyurethane foaming plastic and preparation method thereof
A technology of rigid polyurethane and foam plastics, which is applied in the field of polyurethane materials and its preparation, can solve problems such as poor dispersion performance and poor flame retardant effect, and achieve improved flame retardancy, low raw material cost, and high-efficiency synergistic flame retardant Effect
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Embodiment 1
[0024] 1. Prepare polyurethane composition A
[0025] Weigh 200g combined polyether, 7.5g aluminum hypophosphite, 7.5g aluminum phenylphosphinate, 7.5g dimethyl methylphosphonate and 7.5g methylphosphonic acid bis(2-methyl-5-ethyl- 2-oxo-1,3,2-dioxaphosphorinyl-5-methylene) ester compound flame retardant, 14g of HCFC-141b, 2g of L-6900L, 3g of dimethyl The HT-5050 and 50g glass fibers of ethanolamine, 1.5g are uniformly mixed to make polyurethane composition A;
[0026] 2. Control material temperature and mold temperature
[0027] The material temperature of isocyanate and polyurethane composition A is controlled at 25° C., and then 300 g of isocyanate is weighed, added to polyurethane composition A, and stirred evenly with an electric stirrer;
[0028] 3. Foam molding of PU hard foam
[0029] Pour the homogeneously mixed solution in step 2 into a mold to make it foam. After the foam is solidified and demoulded, place it in an oven and mature it at 70°C for 2 hours to obtai...
Embodiment 2
[0032] 1. Prepare polyurethane composition A
[0033] Weigh 200g of combined polyether, 10g of aluminum hypophosphite, 10g of aluminum phenylphosphinate, 10g of dimethyl methylphosphonate and 10g of methylphosphonic acid bis(2-methyl-5-ethyl- 2-oxo-1,3,2-dioxaphosphorinyl-5-methylene) ester compound flame retardant, 16g of HCFC-141b, 3g of L-6900L, 4g of dimethyl The HT-5050 and 60g glass fibers of ethanolamine, 2.0g are mixed uniformly to make polyurethane composition A;
[0034] 2. Control material temperature and mold temperature
[0035] The material temperature of isocyanate and polyurethane composition A is controlled at 26°C, and then 310g of isocyanate is weighed, added to polyurethane composition A, and stirred evenly with an electric stirrer;
[0036] 3. Foam molding of PU hard foam
[0037]Pour the uniformly mixed solution in step 2 into the mold to make it foam. After the foam is solidified and demoulded, place it in an oven and mature it at 75°C for 2.5 hours t...
Embodiment 3
[0040] 1. Prepare polyurethane composition A
[0041] Weigh 200g of combined polyether, 15g of aluminum hypophosphite, 10g of aluminum phenylphosphinate, 15g of methylphosphonic acid dimethyl and 10g of methylphosphonic acid bis(2-methyl-5-ethyl- 2-oxo-1,3,2-dioxaphosphorinyl-5-methylene) ester compound flame retardant, 15g of HCFC-141b, 2.5g of L-6900L, 4g of dimethyl The HT-5050 and 40g glass fibers of ethanolamine, 2.5g are uniformly mixed to make polyurethane composition A;
[0042] 2. Control material temperature and mold temperature
[0043] The material temperature of isocyanate and polyurethane composition A is controlled at 27°C, and then 300g of isocyanate is weighed, added to polyurethane composition A, and stirred evenly with an electric stirrer;
[0044] 3. Foam molding of PU hard foam
[0045] Pour the homogeneously mixed solution in step 2 into a mold to make it foam. After the foam is solidified and demoulded, place it in an oven and mature it at 80°C for 2 ...
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