A kind of water-based thermosensitive polyurethane and preparation method thereof
A polyurethane and temperature-sensitive technology, applied in the field of water-based temperature-sensitive polyurethane and its preparation, can solve the problems of complex synthesis method, high production cost, unsatisfactory, etc., and achieve good temperature-sensitive effect, viscosity and wear resistance. Satisfaction, the effect of large particle size
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Embodiment 1
[0028] A kind of linear thermosensitive polyurethane, its preparation method is as follows:
[0029] S1. Add 0.02mol N-isopropylacrylamide and 0.024mol diethanolamine to a 100mL two-necked bottle, and stir magnetically for 48 hours under nitrogen gas at 70°C to obtain the thermosensitive monomer B2 containing dihydroxy .
[0030] S2. The polycarbonate diol (PCDL-1000, indicating a molecular weight of 1000) was dehydrated under a vacuum degree of -0.095 MPa and 130° C. for 2 hours, and set aside. Add 0.006mol PCDL-1000, 0.004mol dimethylolpropionic acid and 40mL acetone after dehydration into a 250mL four-neck flask equipped with a condensing reflux device, a mechanical stirrer and nitrogen gas, and at 75°C Stir well, then add 0.012mol of toluene diisocyanate and 0.0005mol of catalyst dibutyltin dilaurate, react at 75°C for 3 hours, add 0.004mol of temperature-sensitive monomer B2 synthesized by S1, continue to react at 75°C for 2h, then add 0.004mol of tributyltin dilaurate ...
Embodiment 2
[0032] A kind of linear thermosensitive polyurethane, its preparation method is as follows:
[0033] S1. Add 0.02mol N-isopropylacrylamide and 0.022mol diethanolamine to a 100mL two-necked bottle, and stir it magnetically for 48 hours under nitrogen gas at 65°C to obtain the thermosensitive monomer B2 containing dihydroxy .
[0034] S2. Remove water from the polycarbonate diol (PCDL-500) at a vacuum degree of -0.095 MPa and 130° C. for 2 hours, and set aside. Add 0.005mol PCDL-500, 0.004mol dimethylolpropionic acid and 50mL acetone after dehydration into a 250mL four-neck flask equipped with a condensing reflux device, a mechanical stirrer and nitrogen gas, and at 70°C Stir well, then add 0.014mol toluene diisocyanate and 0.0006mol catalyst dibutyltin dilaurate, react at 70°C for 4h, add 0.004mol of temperature-sensitive monomer B2 synthesized by S1, continue to react at 70°C for 3h, then add 0.004mol Ethylamine and 180mL deionized water, and finally remove acetone by rotary...
Embodiment 3
[0036] A kind of linear thermosensitive polyurethane, its preparation method is as follows:
[0037] S1. Add 0.02mol N-isopropylacrylamide and 0.026mol diethanolamine to a 100mL two-necked bottle, and stir it magnetically for 48 hours under nitrogen gas at 75°C to obtain the thermosensitive monomer B2 containing dihydroxy .
[0038] S2. Remove water from the polycarbonate diol (PCDL-2000) at a vacuum degree of -0.095 MPa and 130° C. for 2 hours, and set aside. Add 0.007mol PCDL-2000, 0.004mol dimethylolpropionic acid and 60mL acetone after dehydration into a 250mL four-necked flask equipped with a condensing reflux device, a mechanical stirrer, and nitrogen gas. Stir evenly, then add 0.016mol toluene diisocyanate and 0.0006mol catalyst dibutyltin dilaurate, react at 80°C for 3 hours, add 0.004moL of temperature-sensitive monomer B2 synthesized by S1, continue to react at 80°C for 2h, then add 0.004mol of tributyltin dilaurate Ethylamine and 200mL deionized water, and finally...
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