Solvent-free polyurethane dispersoid with controllable particle size and waterborne polyurethane coating solution
A technology of polyurethane dispersion and water-based polyurethane, which can be used in coatings, textiles, papermaking, gloves, etc. It can solve the problems that fingers cannot move flexibly, and the outer surface cannot be formed smoothly, so as to achieve environmental friendliness, smooth film formation and simplified process The effect of the process
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Embodiment 1
[0041] Prepare a 1L three-neck flask, install a stirrer, a thermometer, nitrogen protection and a temperature control device. Add 63 parts of dried polyether diol (number-average molecular weight 1000, functionality 1.92) and 2 parts of 2,2-dimethylolbutyric acid into the flask, heat to 110°C, and stir at 110-120 rpm. After the premix is melted, cool down to 70°C. Then slowly add 27 parts of isophorone diisocyanate into the reaction flask, and keep the reaction temperature at 80~90°C. Finally, when the NCO% of the prepolymer reached the theoretical value, the temperature was immediately lowered to 40-50 °C to obtain 1# prepolymer with an NCO% of 4%.
[0042] Take 11 parts of 1# prepolymer, and add 0.2 parts of triethylamine to it, react for 10 min, and carry out neutralization. Add 11.3 parts of water to the reaction flask, and stir at 400-500 rpm for 15 min. A mixture of 0.42 parts of piperazine and 10 parts of water was added into the reaction flask for chain extension ...
Embodiment 2
[0045] Prepare a 1L three-neck flask, install a stirrer, a thermometer, nitrogen protection and a temperature control device. Add 65 parts of dried polyether diol (number average molecular weight 2000, functionality 1.87), 1 part of 1,4-butanediol, and 3 parts of 2,2-dimethylol propionic acid into the flask, and heat to 110 ℃, stirring speed 110~120 rpm. After the premix is melted, cool down to 70°C. Then 16 parts of isophorone diisocyanate and 8 parts of 4,4-diphenylmethylene diisocyanate were mixed at a molar ratio of 1:0.44, and slowly added to the reaction flask, and the reaction temperature was kept at 80~90 °C. Finally, when the NCO% of the prepolymer reaches the theoretical value, the temperature is immediately lowered to 40~50 °C to obtain 2# prepolymer with an NCO% of 3%.
[0046] Take 20 parts of 2# prepolymer, and add 0.4 parts of triethylamine to it, react for 10 min, and carry out neutralization. Then add 43 parts of water to the reaction flask, and stir at 4...
Embodiment 3
[0049] Prepare a 1L three-neck flask, install a stirrer, a thermometer, nitrogen protection and a temperature control device. Add 70 parts of dried polyether diol (number average molecular weight 1000, functionality 1.92), 2 parts of 1,4-butanediol, 4 parts of 2,2-dimethylol butanoic acid into the flask and heat to 110 ℃, stirring speed 110~120 rpm. After the premix is melted, cool down to 70°C. Then 29 parts of isophorone diisocyanate and 8 parts of 4,4-diphenylmethylene diisocyanate were mixed at a molar ratio of 1:0.25, and slowly added to the reaction flask, and the reaction temperature was kept at 80~90 °C. Finally, when the NCO% of the prepolymer reached the theoretical value, the temperature was immediately lowered to 40-50 °C to obtain 3# prepolymer with an NCO% of 3.2%.
[0050] Take 25 parts of 3# prepolymer, and add 0.78 parts of triethylamine to it, react for 10 min, and carry out neutralization. Then add 200 parts of water to the reaction flask, and stir at 4...
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