Graphene modified waterborne polyurethane resin and preparation method thereof
A water-based polyurethane and graphene modification technology, applied in polyurea/polyurethane coatings, antifouling/underwater coatings, coatings, etc., can solve the problems of easy foaming, high surface tension, and poor water resistance of the coating film, and achieve Good antistatic properties, UV resistance, anti-corrosion effects
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Embodiment 1
[0026] A kind of graphene modified waterborne polyurethane resin and preparation method thereof, its preparation technology is as follows:
[0027] a. In a four-necked bottle equipped with a thermometer, a condenser, and an agitator, add 10 parts of polyester polyol, 2 parts of dimethylol propionic acid, and 1 part of graphene aqueous dispersion, and heat to 100 ℃, stir for 1.5 hours to fully remove the moisture in the raw materials;
[0028] b. Immediately pass nitrogen after the vacuum is stopped, cool the four-neck bottle to 60°C, add 10 parts of TDI, and react for 3 hours; add 7 parts of acetone, measure the NCO value, and stop the reaction when the measured value is close to the theoretically calculated value;
[0029] c. Stop feeding nitrogen, continue stirring, lower the temperature to 40°C, add 1 part of triethylamine to react for 10 minutes, add 67 parts of deionized water under vigorous stirring, and continue stirring at high speed for 10 minutes;
[0030] d. Slowly...
Embodiment 2
[0032] A kind of graphene modified waterborne polyurethane resin and preparation method thereof, its preparation technology is as follows:
[0033] a. Add 18 parts of polyester polyol, 3 parts of methyldiethanolamine, and 2 parts of graphene aqueous dispersion into a four-necked bottle equipped with a thermometer, condenser, and stirrer, and heat to 105°C under vacuum conditions. Stir for 1.5h to fully remove the moisture in the raw materials;
[0034] b. Immediately pass nitrogen after the vacuum is stopped, cool the four-necked bottle to 65°C, add 13 parts of HDI, and react for 3.5 hours; add 12 parts of acetone, measure the NCO value, and stop the reaction when the measured value is close to the theoretically calculated value;
[0035] c. Stop feeding nitrogen, continue stirring, cool down to 38°C, add 1.5 parts of ammonia water to react for 13 minutes, add 48 parts of deionized water under vigorous stirring, and continue stirring at high speed for 15 minutes;
[0036] d. ...
Embodiment 3
[0038] A kind of graphene modified waterborne polyurethane resin and preparation method thereof, its preparation technology is as follows:
[0039] a. In a four-necked bottle equipped with a thermometer, a condenser, and an agitator, add 18 parts of polyether polyol, 3 parts of sodium ethylenediaminoethanesulfonate, and 3 parts of graphene aqueous dispersion, and heat under vacuum conditions To 115°C, stir for 1.5 hours to fully remove the moisture in the raw materials;
[0040] b. Immediately pass nitrogen after the vacuum is stopped, cool the four-necked bottle to 80°C, add 15 parts of IPDI, and react for 4 hours; add 13 parts of acetone, measure the NCO value, and stop the reaction when the measured value is close to the theoretically calculated value;
[0041] c. Stop feeding nitrogen, continue stirring, lower the temperature to 40°C, add 2.5 parts of dimethylethanolamine to react for 20 minutes, add 41.5 parts of deionized water under vigorous stirring, and continue stirr...
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