Slow expansion type building water-stop glue and preparation method thereof
A water-stop glue, slow-expansion technology, applied in building components, building insulation materials, adhesives, etc., can solve the problems of low expansion ratio retention rate, small expansion ratio, easy loss of expansion factor, etc., to achieve simple use and service life. Long, good water stop effect
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Embodiment 1
[0032] The first step: preparation of hydrophilic polyurethane prepolymer
[0033] It is composed of 20 parts by weight of hydrophilic polyether triol, 30 parts by weight of hydrophilic polyether glycol, 4 parts by weight of polyoxypropylene glycol, 5.5 parts by weight of polyoxypropylene triol, and 45 parts by weight of chlorinated paraffin The prepolymer plasticizer is pumped into the reactor to stir and heat, and the vacuum system is turned on to make the vacuum in the reactor reach 0.096Mpa. When the temperature of the material rises to 96℃, maintain the above temperature and vacuum and start timing dehydration for 2 hours After that, cool down to 60℃;
[0034] Under stirring conditions, 6 parts by weight of toluene diisocyanate and 3 parts by weight of diphenylmethane-4,4'-diisocyanate were added to the above reaction kettle, and the temperature was slowly raised to 70°C within 60 minutes, and the reaction temperature was stable Then, a catalyst composed of 0.03 parts by weig...
Embodiment 2
[0038] The first step: preparation of hydrophilic polyurethane prepolymer
[0039] It is composed of 25 parts by weight of hydrophilic polyether triol, 20 parts by weight of hydrophilic polyether glycol, 5 parts by weight of polyoxypropylene glycol, 4.5 parts by weight of polyoxypropylene triol and 55 parts by weight of chlorinated paraffin The prepolymer plasticizer is pumped into the reactor to stir and heat, and the vacuum system is turned on to make the vacuum in the reactor reach 0.095MPa. When the temperature of the material rises to 102℃, maintain the above temperature and vacuum, and start timing for dehydration for 2.5 hours After that, cool down to 55℃;
[0040] Under stirring conditions, 7 parts by weight of toluene diisocyanate and 3 parts by weight of diphenylmethane-4,4'-diisocyanate were added to the above reaction kettle, and the temperature was slowly raised to 65°C within 90 minutes, after the reaction temperature stabilized , Adding a catalyst composed of 0.02 p...
Embodiment 3
[0044] The first step: preparation of hydrophilic polyurethane prepolymer
[0045] Combine 15 parts by weight of hydrophilic polyether triol, 25 parts by weight of hydrophilic polyether diol, 6 parts by weight of polyoxypropylene glycol, 4.0 parts by weight of polyoxypropylene triol and 25 parts by weight of chlorinated paraffin, The prepolymer plasticizer composed of 10 parts by weight of dibutyl phthalate and 5 parts by weight of butyl phthalate is pumped into the reactor to stir and heat, and the vacuum system is turned on to make the vacuum in the reactor Reach 0.098MPa, when the material temperature rises to 100℃, maintain the above temperature and vacuum degree, start timing dehydration for 3.5 hours, then cool down to 58℃;
[0046] Under stirring conditions, 4 parts by weight of toluene diisocyanate and 4.5 parts by weight of diphenylmethane-4,4'-diisocyanate were added to the above reaction kettle, and the temperature was slowly raised to 75°C within 80 minutes, after the r...
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