Waterborne polyurethane-polyurea dispersion resin as well as preparation method and application thereof
A water-based polyurethane and dispersion technology, applied in the field of glass fiber impregnation film-forming agent, can solve the problems of not meeting the requirements of glass fiber processing, limited number of functional groups, low proportion of active ingredients, etc., and achieve excellent film-forming properties Solvent resistance, excellent solvent resistance, effects of high strength and mechanical properties
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Embodiment 1
[0105] (1) Add 37.84g HDI, 50g IPDI, 23g Ymer TM N120, 240g PNA2000, 16.4g neopentyl glycol, 0.12g BiCat8108, and 37g acetone, stirred and heated to 80°C for 3 hours, reacted until the NCO in the system basically reached or approached the theoretical value, and an isocyanate-terminated prepolymer was generated;
[0106] (2) Then cool down the system to about 50-56°C, add 550g of acetone, stir evenly, maintain the temperature between 40-45°C, dissolve and dilute the materials in the system, and obtain the diluted isocyanate-terminated prepolymer;
[0107] (3) Dissolve 4g of IPDA, 4g of hydroxyethylethylenediamine and 1.6g of A95 in 40g of water, stir thoroughly to obtain an aqueous solution, and add it to the diluted isocyanate obtained in step (2) within 1 to 3 minutes In the end-capped prepolymer, maintain the system at 45-50°C for chain extension reaction for 25 minutes; pour the prepolymer prepared by the chain extension reaction into a dispersion cup, and add it under h...
Embodiment 2
[0111] (1) Add 37.84g HDI, 50g IPDI, 23g Ymer TM N120, 240g of PTMEG2000, 16.4g of neopentyl glycol, 0.12g of BiCat8108 and 37g of acetone, stirred and heated to 80°C for 3 hours of reaction until the NCO in the system basically reached or approached the theoretical value, and an isocyanate-terminated prepolymer was generated;
[0112] (2) Then cool down the system to about 50-56°C, add 550g of acetone, stir evenly, maintain the temperature between 40-45°C, dissolve and dilute the materials in the system, and obtain the diluted isocyanate-terminated prepolymer;
[0113] (3) Dissolve 4g of IPDA, 4g of hydroxyethylethylenediamine and 1.6g of A95 in 40g of water, stir thoroughly to obtain an aqueous solution, and add it to the diluted isocyanate obtained in step (2) within 1 to 3 minutes In the end-capped prepolymer, maintain the system at 45-50°C for chain extension reaction for 25 minutes; pour the prepolymer prepared by the chain extension reaction into a dispersion cup, an...
Embodiment 3
[0117] (1) Add 37.84g HDI, 50g IPDI, 23g Ymer TM N120, 240g of CMA654, 12g of neopentyl glycol, 0.12g of BiCat8108 and 37g of acetone, stirred and heated to 80°C for 3 hours of reaction until the NCO in the system basically reached or approached the theoretical value, and an isocyanate-terminated prepolymer was generated;
[0118] (2) Then cool down the system to about 50-56°C, add 550g of acetone, stir evenly, maintain the temperature between 40-45°C, dissolve and dilute the materials in the system, and obtain the diluted isocyanate-terminated prepolymer;
[0119] (3) Dissolve 4g of IPDA, 4g of hydroxyethylethylenediamine and 1.6g of A95 in 40g of water, stir thoroughly to obtain an aqueous solution, and add it to the diluted isocyanate obtained in step (2) within 1 to 3 minutes In the end-capped prepolymer, maintain the system at 45-50°C for chain extension reaction for 25 minutes; pour the prepolymer prepared by the chain extension reaction into a dispersion cup, and add...
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